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[Prebiotic phosphate: a problem insoluble in water ? ].

Renzo Morchio, Silvano Traverso

    Rivista Di Biologia
    |May 13, 2005
    PubMed
    Summary

    Prebiotic phosphorus chemistry may have occurred in hydrophobic layers on early Earth, preventing precipitation and enabling reactions with organic molecules to form life

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    Area of Science:

    • Prebiotic chemistry
    • Origin of life studies
    • Geochemistry

    Background:

    • Phosphate readily precipitates with calcium in water, posing a challenge for prebiotic phosphorus availability.
    • Previous work suggested hydrophobic layers on early Earth's seas could concentrate organic molecules.

    Purpose of the Study:

    • To propose a mechanism for phosphorus availability and reaction in prebiotic environments.
    • To investigate the role of hydrophobic media in concentrating and polymerizing biomolecules.

    Main Methods:

    • Hypothesizing phosphorus compound accumulation in hydrophobic media, protected from calcium precipitation and hydrolysis.
    • Proposing reactions between volcanic phosphorus compounds (e.g., phosphite) and hydrophobic organic molecules (amino acids, pyrimidine bases).

    Main Results:

    • Phosphorus compounds could accumulate in hydrophobic layers due to the absence of calcium ions.
    • Phosphite may react with amino acids to form phosphoamino acids.
    • Phosphoamino acids could interact with pyrimidine bases to form peptides and oligonucleotide-like polymers.

    Conclusions:

    • Hydrophobic environments offer a plausible solution to the prebiotic phosphorus availability problem.
    • These environments could facilitate the formation of key biomolecules, including phosphoamino acids, peptides, and oligonucleotides.
    • The proposed mechanism aligns with experimental evidence of phosphoamino acid and nucleotide formation in anhydrous organic media.

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