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XNA? :-)

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General fitness, health and nutrition
Published
27 May 2004
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7 June 2004
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Kate Orman
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  1. A fellow science fiction fan once asked me why ribose was
    the sugar in RNA - what was special about ribose? Could a
    biology exist somewhere which was based around another
    sugar, such as xylose? I was intrigued by the question,
    but have never come across an answer in my reading. Can
    anyone help?

    Many thanks!
    - Kate

  2. Kate asks:

    Quoted message said:

    A fellow science fiction fan once asked me why ribose was
    the sugar in RNA - what was special about ribose? Could a
    biology exist somewhere which was based around another
    sugar, such as xylose? I was intrigued by the question,
    but have never come across an answer in my reading. Can
    anyone help?

    Other sugars have indeed been considered. Ribose is
    considered to be a difficult molecule to form abiogenically
    (ribose, btw, derives its name from the "Rockefeller
    Institute of Biology"😉, thus other, simpler sugars have been
    investigated. See, e.g.:

    nai.arc.nasa.govnews detail.cfm
    189

    Wirt Atmar

  3. [email hidden] (Wirt Atmar) wrote in message news:<[email hidden]>...

    Quoted message said:

    Kate asks:

    Quoted message said:

    A fellow science fiction fan once asked me why ribose was
    the sugar in RNA - what was special about ribose? Could a
    biology exist somewhere which was based around another
    sugar, such as xylose? I was intrigued by the question,
    but have never come across an answer in my reading. Can
    anyone help?

    Other sugars have indeed been considered. Ribose is
    considered to be a difficult molecule to form
    abiogenically (ribose, btw, derives its name from the
    "Rockefeller Institute of Biology"😉, thus other, simpler
    sugars have been investigated. See, e.g.:

    nai.arc.nasa.govnews detail.cfm
    D=189

    If you limit yourself to the 5 carbon (furanose) ring
    sugars, you have 16 to choose among. 4 names, times 2 for
    chirality, times 2 again for the alpha/beta configuration of
    the ring formation.

    As far as anyone knows, the choice of chirality is
    arbitrary. But there is something a bit special about the
    ribose ring. If you consider the ring as defining a plane,
    the hydroxyl groups from the first three carbons all point
    in the same direction (down, say). The fourth carbon doesn't
    have a free hydroxyl - it is attached to the ring oxygen,
    which can also pucker downward. The fifth carbon is above
    the plane, but its attached phosphate group may also be
    oriented downward.

    Is this just a coincidence? Maybe. But it is possible that
    this particular sugar arrangement is ideally suited for
    hydrogen bonding to a flat surface - perhaps water ice or a
    mineral crystal. Make it a crystal of a phosphate mineral,
    maybe one whose metal ions are able to perform
    photoreductions of CO2, and you may have something
    interesting.

    Nature doesn't always choose the best technology or material
    for a job. It picks something that is easy to construct and
    works reasonably well, then it builds from there. Not too
    different from human technology.

  4. [email hidden] (Wirt Atmar) wrote in message news:<[email hidden]>...

    Quoted message said:

    Kate asks:

    Quoted message said:
    Quoted message said:

    A fellow science fiction fan once asked me why ribose was
    the sugar in RNA - what was special about ribose? Could a
    biology exist somewhere which was based around another
    sugar, such as xylose? I was intrigued by the question,
    but have never come across an answer in my reading. Can
    anyone help?

    Quoted message said:

    Other sugars have indeed been considered. Ribose is
    considered to be a difficult molecule to form
    abiogenically (ribose, btw, derives its name from the
    "Rockefeller Institute of Biology"😉, thus other, simpler
    sugars have been investigated. See, e.g.:

    nai.arc.nasa.govnews detail.cfm
    D=189

    Thanks Wirt - that's fascinating! (And the origin of the
    name "ribose" is hilarious. :-)

    Cheers,
    - Kate

  5. Jim Menegay <[email hidden]> wrote or quoted:

    Quoted message said:

    As far as anyone knows, the choice of chirality is
    arbitrary.

    Many theorise that it is not arbitrary:

    ch.cam.ac.ukajm.html

    abc.net.aus924661.htm
    --
    __________
    |im |yler timtyler.orgtimtyler.org [email hidden] Remove
    lock to reply.

  6. Tim Tyler <[email hidden]> wrote in message news:<[email hidden]>...

    Quoted message said:

    Jim Menegay <[email hidden]> wrote or quoted:

    Quoted message said:

    As far as anyone knows, the choice of chirality is
    arbitrary.

    Many theorise that it is not arbitrary:

    Tim and Jim - many thanks indeed for the info and links!

    - Kate

  7. Tim Tyler <[email hidden]> wrote in message news:<[email hidden]>...

    Quoted message said:

    Jim Menegay <[email hidden]> wrote or quoted:

    Quoted message said:

    As far as anyone knows, the choice of chirality is
    arbitrary.

    Many theorise that it is not arbitrary:

    ch.cam.ac.ukajm.html

    abc.net.aus924661.htm

    *Some* theorise that it is not arbitrary. The second link
    actually agrees with me:

    "But why the left path and not the right? It could be
    simply chance. "We're not sure whether left-handed
    serine's dominance in the earliest period of life's
    prehistory was arbitrary," Cooks said.

    "But serine can switch its chirality under mild
    conditions. If somehow polarised light, for example, or a
    swirling motion in water were present at a critical
    moment, some of the right-handed clusters could have
    become left-handed. This could have cascaded into other
    prebiotic reactions and set the pace for a billion years
    of evolution."

    As far as I can tell, this guy says it is arbitrary, but he
    knows who made the arbitrary decision - it was serine.

    The ideas expressed in the first link have been around since
    parity-violation in the weak interactions was first
    discovered back in 1954-56. They also assume 1950s ideas on
    the origin of life from a pre-biotic soup of amino acids:

    Due to the weak force, L and D molecules have slightly
    unequal energies because they are not in fact true mirror
    images: the true enantiomer of an L-amino acid is the D-
    amino acid made of anti-matter.

    We calculate these small energy differences between
    enantiomers using ab initiomolecular orbital methods. In
    most cases our calculations do indeed predict the
    correct sign: not only are the L-amino acids more stable
    than the D, but the natural D-sugars are more stable
    than the L, and the right-hand DNA double helix is also
    more stable than its left-hand mirror image. We believe
    the slight enantiomeric excess from these "parity-
    violating energy differences" could be amplified
    kinetically in the pre-biotic soup to preferentially
    select today's L-amino acid/D-sugar biochemistry over
    D-amino acid/L-sugar "mirror life".

    The key thing is that you have to have a "slight
    enantiomeric excess" that gets "amplified kinetically". And
    I have never seen a weak-force paper that says just how big
    the excess is to begin with and how much more likely it is
    that this global excess will be amplified - rather than a
    local fluctuation being amplified. In any case, her results
    only "predict the correct sign" in "most cases" - but we are
    far from understanding which case is the important one. My
    OOL theories suggest that it would be a chiral transition
    metal ion. Yours suggest that it would be a flawed silicate
    crystal. Other people agree with her that it would be a
    sugar or amino acid. It still seems fairly arbitrary to me.

    It seems to me that the choice of chirality is one of the
    first choices made by natural selection. Was it made by r-
    selection or K-selection? If K, then the weak force may be
    significant. But if r-selection was involved, and I believe
    it was, then we have "survival of the first", and arbitrary
    local fluctuations are probably more significant than a
    deterministic global bias.

  8. Jim Menegay <[email hidden]> wrote or quoted:

    Quoted message said:

    Tim Tyler <[email hidden]> wrote in message
    news:<[email hidden]>...

    Quoted message said:

    Jim Menegay <[email hidden]> wrote or quoted:

    Quoted message said:
    Quoted message said:
    Quoted message said:

    As far as anyone knows, the choice of chirality is
    arbitrary.

    Many theorise that it is not arbitrary:

    ch.cam.ac.ukajm.html

    abc.net.aus924661.htm

    *Some* theorise that it is not arbitrary. [...]

    Quoted message said:

    The ideas expressed in the first link have been around
    since parity-violation in the weak interactions was
    first discovered back in 1954-56. They also assume 1950s
    ideas on the origin of life from a pre-biotic soup of
    amino acids:

    Not really. The basic idea is that there is an asymmetry
    between left- and right- handed molecules that stems from
    the weak force, and that this contributed significantly to
    the origin of biological chirality.

    As for quantifying the issue:

    ``The ascent of parity-violation: exochirality in the solar
    system and beyond''

    - calorierestriction.orgpmid

    ...says that excesses of L-amino acids have been found in
    meteorites.

    ``Non-racemic amino acids in the Murray and Murchison
    meteorites''

    - calorierestriction.orgpmid

    ...offers:

    ``Small (1.0-9.2%) L-enantiomer excesses were found in six
    alpha-methyl-alpha-amino alkanoic acids from the Murchison
    (2.8-9.2%) and Murray (1.0-6.0%) carbonaceous
    chondrites [...]''

    ...but says it might have been significant:

    ``The alpha-methyl-alpha-amino alkanoic acids could have
    been significant in the origin of terrestrial homochirality
    given their resistance to racemization and the possibility
    for amplification of their enantiomeric excesses suggested
    by the strong tendency of their polymers to form chiral
    secondary structure.''

    Of course the founder effect may also have been involved.

    However if there is a bias in the fundamental physics then
    "arbitrary" seems like an unsuitable word to use - since the
    choice has some significant consequences.

    The idea that amino acids were chosen without their
    handedness being considered seems most likely in "amino-acid-
    first" scenarios.

    If there's an existing complex adaptive system, then it can
    try using both types, and then adopt the better one.

    I tend to favour the latter view - if there's an amino-acid
    chiral asymmetry, then by the time living systems came to
    choose their amino acids, then they would have been smart
    enough to pick the best ones.

    According to my first link
    ["]http://www.ch.cam.ac.uk/CUCL/staff/ajm.html] that seems to
    be what happened:

    ``We calculate these small energy differences between
    enantiomers using ab initiomolecular orbital methods. In
    most cases our calculations do indeed predict the correct
    sign: not only are the L-amino acids more stable than the D,
    but the natural D-sugars are more stable than the L, and the
    right-hand DNA double helix is also more stable than its left-
    hand mirror image.''

    I.e. not arbitrary - by design.
    --
    __________
    |im |yler timtyler.orgtimtyler.org [email hidden] Remove
    lock to reply.

  9. (Jim Menegay) said:

    Tim Tyler <[email hidden]> wrote in message
    news:<[email hidden]>...

    Quoted message said:

    Jim Menegay <[email hidden]> wrote or quoted:

    Quoted message said:

    As far as anyone knows, the choice of chirality is
    arbitrary.

    Many theorise that it is not arbitrary:

    ch.cam.ac.ukajm.html

    abc.net.aus924661.htm

    The ideas expressed in the first link have been around
    since parity-violation in the weak interactions was
    first discovered back in 1954-56. They also assume 1950s
    ideas on the origin of life from a pre-biotic soup of
    amino acids:

    Due to the weak force, L and D molecules have slightly
    unequal energies because they are not in fact true
    mirror images: the true enantiomer of an L-amino acid is
    the D-amino acid made of anti-matter.

    Nitpick: the true mirror image of an L-amino acid is the D-
    amino acid made of antimatter, travelling backward in time.
    I.e., physics is invariant under CPT transformations, but
    not CP transformations. Not that you'd ever be able to tell
    the difference in practice.

    --
    Steve Schaffner [email hidden] Immediate assurance is an
    excellent sign of probable lack of insight into the topic.
    Josiah Royce

  10. Tim Tyler <[email hidden]> wrote in message news:<[email hidden]>...

    Quoted message said:

    Jim Menegay <[email hidden]> wrote or quoted:

    Quoted message said:

    Tim Tyler <[email hidden]> wrote in message
    news:<[email hidden]>...

    Quoted message said:

    Jim Menegay <[email hidden]> wrote or
    quoted:

    Quoted message said:
    Quoted message said:

    > As far as anyone knows, the choice of chirality is
    > arbitrary.

    Many theorise that it is not arbitrary:
    ch.cam.ac.ukajm.html ww-ww-
    w.abc.net.au/science/news/stories/s924661.htm

    *Some* theorise that it is not arbitrary. [...]

    As for quantifying the issue:

    ``The ascent of parity-violation: exochirality in the
    solar system and beyond''
    - calorierestriction.orgpmid ...says
    that excesses of L-amino acids have been found in
    meteorites.

    Yes, but did the weak force cause that excess?

    Quoted message said:

    ``Non-racemic amino acids in the Murray and Murchison
    meteorites''
    - calorierestriction.orgpmid
    ...offers:

    ``Small (1.0-9.2%) L-enantiomer excesses were found in six
    alpha-methyl-alpha-amino alkanoic acids from the Murchison
    (2.8-9.2%) and Murray (1.0-6.0%) carbonaceous chondrites
    [...]''

    These are HUGE excesses. Too big, IMHO, to have been caused
    by the weak force. And, in fact, the authors suggest a
    completely different explanation in the part of the abstract
    that you clipped:

    These amino acids [2-amino-2,3-dimethylpentanoic acid
    (both diastereomers), isovaline, alpha-methyl
    norvaline, alpha-methyl valine, and alpha-methyl
    norleucine] are either unknown or rare in the
    terrestrial biosphere. Enantiomeric excesses were
    either not observed in the four alpha-H-alpha-amino
    alkanoic acids analyzed (alpha-amino-n-butyric acid,
    norvaline, alanine, and valine) or were attributed to
    terrestrial contamination. The substantial excess of
    L-alanine reported by others was not found in the
    alanine in fractionated extracts of either meteorite.
    The enantiomeric excesses reported for the alpha-
    methyl amino acids may be the result of partial
    photoresolution of racemic mixtures caused by
    ultraviolet circularly polarized light in the
    presolar cloud.

    That is, they postulate a physical chirality (polarized
    light) which results not from the weak force, but from
    macroscopic geometric chirality. That is, they think it was
    arbitrary. (Thanks for making my case for me Tim. That is
    twice now you have done it ;-)

    [snip]

    Quoted message said:

    However if there is a bias in the fundamental physics then
    "arbitrary" seems like an unsuitable word to use - since
    the choice has some significant consequences. [snip rest
    of post]

    I'll accept this restriction on the use of "arbitrary". So,
    the question between us is whether biochirality results from
    fundamental physics or from some local arbitrary physical
    asymetry such as polarized light or the orientation of a
    crystal face. Personally, I happen to like the crystal face
    idea (and I'm surprised you don't as well). Here is a link
    to such a theory:
    pubmedcentral.govarticlerender.fcgi

    Well, since you didn't provide information on how large the
    weak-force effect is, I went looking and came up with this:

    pubmedcentral.govarticlerender.fcgi

    It references the weak force sources that you favor:

    From the works of Mason, Tranter, and MacDermott (11–15),
    we know that the value of PVED is ≈1 × 10^−17
    kT for the amino acids, the L-amino acids having the
    lower energy.

    PVED = parity-violating energy difference between
    enantiomers. As I'm sure you are aware, 10^-17 kT is a tiny
    effect. Completely unmeasurable.

    Despite the smallness of PVED there have been suggestions
    that PVED is in fact the cause of the homochirality of
    biomolecules. Although the existence of a PVED between
    enantiomers is theoretically certain its experimental
    confirmation is still missing. ...

    However, these authors come up with a way of amplifying
    it, and actually detect it in a non-biologically
    relevant system!

    There is hope of detecting PVED in crystallization
    because macroscopic crystals consist of a large number of
    molecules. If there is strong enantiomeric selection in
    crystallization from a racemic solution, a mixture of
    pure right and left crystallites will be separated. PVED
    could increase the number of crystallites of the
    enantiomer that has lower energy.

    The extremely small value of [epsilon] probably rules out
    the possibility of observing PVED in the case of carbon-
    centred enantiomers. Its value, however, increases in
    proportion to the sixth power of the atomic number Z of
    the element in the asymmetry center. In our experiments
    enantiomers with Co (Z = 27) or Ir (Z = 77) at the
    asymmetry center were chosen for the crystallization
    procedures.

    Exciting stuff, though the effect they got was at the
    borderline of detectability.

    So, how does the (global) weak force compare in strength
    with the (very local) crystal face or the (astronomically
    local) polarized light ideas. I found the following review
    which claims that polarized light can explain enantiomeric
    excesses on the order of 1%, and that crystals can do that
    well too, or better. However, the weak force seems to be
    limited to excesses on the order of 10^-12 or less.

    pubmedcentral.govpicrender.fcgi
    ion=stream&blobtype=pdf

  11. "Jim Menegay" <[email hidden]> wrote in message
    "]news:[email hidden]...

    Quoted message said:

    From the works of Mason, Tranter, and MacDermott
    (11–15), we know that the value of PVED is ≈1 ×
    10^−17 kT for the amino


    acids,

    Quoted message said:

    the L-amino acids having the lower energy.

    Sorry about the garble. The lines should read:

    Quoted message said:

    From the works of Mason, Tranter, and MacDermott
    (11–15), we know that the value of PVED is about 10^-17
    kT for the amino acids, the L-amino acids having the
    lower energy.

  12. Jim Menegay <[email hidden]> wrote or quoted:

    Quoted message said:

    Tim Tyler <[email hidden]> wrote in message
    news:<[email hidden]>...

    Quoted message said:

    Jim Menegay <[email hidden]> wrote or quoted:

    Quoted message said:

    Tim Tyler <[email hidden]> wrote in message
    news:<[email hidden]>...
    > Jim Menegay <[email hidden]> wrote or
    > quoted:

    Quoted message said:
    Quoted message said:
    Quoted message said:

    > > As far as anyone knows, the choice of chirality is
    > > arbitrary.
    >
    > Many theorise that it is not arbitrary:
    > ch.cam.ac.ukajm.html --
    > www.abc.net.au/science/news/stories/s924661.htm

    *Some* theorise that it is not arbitrary. [...]

    As for quantifying the issue:

    [...]

    Quoted message said:
    Quoted message said:

    ``Non-racemic amino acids in the Murray and Murchison
    meteorites''
    - calorierestriction.orgpmid
    ...offers:

    ``Small (1.0-9.2%) L-enantiomer excesses were found in
    six alpha-methyl-alpha-amino alkanoic acids from the
    Murchison
    (2.8-9.2%) and Murray (1.0-6.0%) carbonaceous
    chondrites [...]''

    These are HUGE excesses. Too big, IMHO, to have been
    caused by the weak force. And, in fact, the authors
    suggest a completely different explanation in the part of
    the abstract that you clipped:

    These amino acids [2-amino-2,3-dimethylpentanoic acid
    (both diastereomers), isovaline, alpha-methyl
    norvaline, alpha-methyl valine, and alpha-methyl
    norleucine] are either unknown or rare in the
    terrestrial biosphere. Enantiomeric excesses were
    either not observed in the four alpha-H-alpha-amino
    alkanoic acids analyzed (alpha-amino-n-butyric acid,
    norvaline, alanine, and valine) or were attributed to
    terrestrial contamination. The substantial excess of
    L-alanine reported by others was not found in the
    alanine in fractionated extracts of either meteorite.
    The enantiomeric excesses reported for the alpha-
    methyl amino acids may be the result of partial
    photoresolution of racemic mixtures caused by
    ultraviolet circularly polarized light in the presolar
    cloud.

    That is, they postulate a physical chirality (polarized
    light) which results not from the weak force, but from
    macroscopic geometric chirality. That is, they think it
    was arbitrary. (Thanks for making my case for me Tim. That
    is twice now you have done it ;-)

    Several other references attribute the asymmetry to
    polarised light:

    ``Photochemical concepts on the origin of biomolecular
    asymmetry.''

    - calorierestriction.orgpmid

    ``Circular polarization in star-formation regions:
    implications for biomolecular homochirality.''

    - calorierestriction.orgpmid

    One that attributes it to a heavy star:

    ``Supernovae, neutron stars and biomolecular chirality''

    - calorierestriction.orgpmid

    *If* the polarisation stems from one particular rotating
    object, then it might well be arbitrary. Otherwise, the weak
    force and existing living systems seem like possible casuses
    of the asymmetry.
    --
    __________
    |im |yler timtyler.orgtimtyler.org [email hidden] Remove
    lock to reply.

  13. Jim Menegay <[email hidden]> wrote or quoted:

    Quoted message said:

    Tim Tyler <[email hidden]> wrote in message
    news:<[email hidden]>...

    Quoted message said:
    Quoted message said:

    However if there is a bias in the fundamental physics
    then "arbitrary" seems like an unsuitable word to use -
    since the choice has some significant consequences.
    [snip rest of post]

    I'll accept this restriction on the use of "arbitrary".
    So, the question between us is whether biochirality
    results from fundamental physics or from some local
    arbitrary physical asymetry such as polarized light or the
    orientation of a crystal face. Personally, I happen to
    like the crystal face idea (and I'm surprised you don't as
    well). Here is a link to such a theory: pubmed-pubmed-
    central.gov/articlerender.fcgi?artid=33239

    As far as I'm concerned there are basically two options for
    the origin of homochirality - the weak force, and chance.

    The subsequent prevalance of molecules of one sort or the
    other is a consequence of one of these (plus - of course -
    common descent, the fact that complex machines need to be
    chiral and the fact that componenets of the same handedness
    sometimes associate).

    The weak force is indeed weak. The hypothesis that it is
    involved really depends on the presence of mechanisms that
    could magnify it.

    Natural selection could magnify it - but that could also
    magnify any bias present due to differential destruction of
    left- and right- enantiomers by polarised light emitted from
    something like a neutron star.

    I suspect living systems will *eventually* use whichever set
    of molecules that are of the chirality which is most
    suitable -
    i.e. I have faith that evolution is sufficiently powerful to
    escape from any local minima on this front - even if
    the selection pressures involved are very small.

    I *expect* this will mean that the weak force will
    eventually win out over any local biases caused by spinning
    objects - on the grounds that living systems are more likely
    to want universal homochirality than the benefits of using a
    chirality to suit local conditions.

    The only question in my mind is whether this has
    happened already.

    *Hopefully* some empirical data will one-day be available on
    the issue:

    ``If the observed molecular parity violation on Earth was
    mainly caused by random mechanisms one would expect to find
    enantiomers of different handedness on different planetary
    or interstellar bodies. If homochirality was determined by
    circularly polarized radiation from a passing neutron star,
    all planets within a given solar system would have been
    affected by its same pole, and would therefore produce
    biomolecules of the same hand. And if biology?s optical
    activity was determined by the universal chiral influence of
    the weak force, one would expect to find the same type of
    enantiomers throughout the entire universe.''

    - chiralitaet.demh(ol1.html

    However, today, I have to admit that the case for the weak
    force being involved seems far from proven.
    --
    __________
    |im |yler timtyler.orgtimtyler.org [email hidden] Remove
    lock to reply.

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