Abstract
Published data on adsorption and condensation of amino acids, purine and pyrimidine bases, sugars, nucleosides, and nucleotides are analyzed in connection with Bernal's hypothesis that clays and other minerals may have provided the most likely surface for adsorption and condensation of these molecules in prebiotic times. Using surface concentration and reaction rate as the main criteria for the feasibility of condensation reactions, four types of prebiotic environments were analyzed: (1) an ocean-sediment system, (2) a dehydrated lagoon bed produced by evaporation, (3) the surface of a frozen sediment, and (4) a fluctuating system where hydration (rainstorms, tidal variations, flooding) and dehysration (evaporation) take place in a cyclic manner. With the possible exception of nucleotides, low adsorption of organomonomers on sediment surfaces of a prebiotic ocean (pH 8) is expected, and significant condensation is considered unlikely. In dehydrated and frozen systems, high surface concentrations are probable and condensation is more likely. In fluctuating environments, condensation rates will be enhanced and the size distribution of the oligomers formed during dehydration may be influenced by a "redistribution mechanism" in which adsorbed oligomers and monomers are desorbed and redistributed on the solid surface during the next hydration-dehydration cycle.
MeSH Terms
Adsorption
Aluminum Silicates
Amino Acids
Apatites
Biological Evolution
Carbohydrates
Chemical Phenomena
Chemistry
Hydrogen-Ion Concentration
Macromolecular Substances
Nucleosides
Nucleotides
Purines
Pyrimidines
Surface Properties
Water
Chemicals
Aluminum Silicates
Amino Acids
Apatites
Carbohydrates
Macromolecular Substances
Nucleosides
Nucleotides
Purines
Pyrimidines
Water
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Lahav N
Chang S
References (29)
29 references, click to expand
-
Prebiotic peptide-formation in the solid state. III. Condensation reactions of glycine in solid state mixtures containing inorganic polyphosphates.
J Mol Evol. 1975 Nov 4;6(3):185-97
PMID: 1539
-
On the asymmetric polymerization of aspartic acid enantiomers by kaolin.
J Mol Evol. 1974 Feb 28;3(1):49-56
PMID: 4829188
-
On the possible role of organic melanoidin polymers as matrices for prebiotic activity.
J Mol Evol. 1975 Dec 29;6(4):253-70
PMID: 1542
-
Prebiotic synthesis of polypeptides by heterogeneous polycondensation of amino-acid adenylates.
Nature. 1970 Nov 14;228(5272):636-9
PMID: 5474935
-
The prebiotic synthesis of deoxythymidine oligonucleotides.
J Mol Evol. 1974;3(4):323-30
PMID: 4416423
-
Soil and water and its relationship to the origin of life.
Orig Life. 1975 Jan-Apr;6(1-2):23-36
PMID: 1153183
-
The mechanism and protobiochemical relevance of dicyanamide-medicated peptide synthesis.
Biochim Biophys Acta. 1966 Aug 24;124(2):339-50
PMID: 5968904
-
Prebiotic peptide-formation in the solid state. II. Reaction of glycine with adenosine 5'-triphosphate and P1,P2-diadenosine-pyrophosphate.
J Mol Evol. 1975 Nov 4;6(3):165-84
PMID: 1538
-
On the possible role of crystals in the origins of life. I. The adsorption of nucleosides, nucleotides and pyrophosphate by apatite crystals.
Curr Mod Biol. 1969 Oct;3(1):20-6
PMID: 4309914
-
Asymmetric adsorption of alanine by quartz.
Science. 1974 Oct 11;186(4159):143-4
PMID: 17744221
-
Beta structures of alternating polypeptides and their possible prebiotic significance.
Nature. 1975 Jul 31;256(5516):383-7
PMID: 238134
-
Synthesis of amino acid residues with reactive side chains under simple conditions.
Science. 1966 Dec 9;154(3754):1344-6
PMID: 5925066
-
Prebiotic phosphorylation. II. Nucleotide synthesis in the reaction system apatite-cyanogen-water.
Curr Mod Biol. 1973 Dec;5(3):119-22
PMID: 4780979
-
On the possible role of crystals in the origins of life. VII. The adsorption and polymerization of phosphoramidates by montmorillonite clay.
J Mol Evol. 1974;3(2):141-50
PMID: 4407469
-
Peptide formation mediated by cyanate.
Nature. 1973 Aug 17;244(5416):435-7
PMID: 4355061
-
The ocean as a chemical system.
Science. 1967 Jun 2;156(3779):1189-97
PMID: 17792775
-
Studies in prebiotic synthesis. VI. Synthesis of purine nucleosides.
J Mol Biol. 1972 Jun 14;67(1):25-33
PMID: 4339529
-
On the asymmetric adsorption of phenylalanine enantiomers by kaolin.
Curr Mod Biol. 1973 Mar;5(2):103-13
PMID: 4696087
-
A production of amino acids under possible primitive earth conditions.
Science. 1953 May 15;117(3046):528-9
PMID: 13056598
-
Organic synthesis by quench reactions.
Orig Life. 1975 Jan-Apr;6(1-2):99-107
PMID: 1153193
-
The prebiotic synthesis of deoxthymidine oligonucleotides. II. Comparison of condensing agents.
J Mol Evol. 1975 Nov 4;6(3):199-207
PMID: 1540
-
Letter to the editor: A re-examination of the zeolite-promoted, clay-mediated peptide synthesis.
J Mol Evol. 1974 Nov 29;4(2):189-94
PMID: 4469277
-
Peptides and amino acids in the primordial hydrosphere.
Biosystems. 1975 May;6(4):224-8
PMID: 1137721
-
The question of the possible asymmetric polymerization of aspartic acid on kaolinite.
J Mol Evol. 1974 Feb 28;3(1):57-61
PMID: 4829189
-
Long-wavelength ultraviolet photoproduction of amino acids on the primitive Earth.
Science. 1971 Jul 30;173(3995):417-20
PMID: 17770442
-
On the possible role of crystals in the origins of life. II. The adsorption of amino acids by apatite crystals.
Curr Mod Biol. 1969 Oct;3(1):69-73
PMID: 5823565
-
The role of water in the origin of life and its function in the primitive gene.
J Theor Biol. 1973 May;39(2):249-76
PMID: 4353934
-
Evidence for selective adsorption and polymerization of the L-optical isomers on the edge faces of kaolinite.
Experientia. 1971 Mar 15;27(3):242-3
PMID: 5546626
-
Simultaneous existence of different enviroments in aqueous clay systems and its possible role in prebiotic synthesis.
J Mol Evol. 1975 Aug 5;5(3):243-7
PMID: 1159802