Ester-Mediated Amide Bond Formation Driven by Wet-Dry Cycles: A Possible Path to Polypeptides on the Prebiotic Earth.
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A Self-Assembled Aggregate Composed of a Fatty Acid Membrane and the Building Blocks of Biological Polymers Provides a First Step in the Emergence of ProtocellsA Field Trip to the Archaean in Search of Darwin's Warm Little PondPrebiotic-Like Condensations of Cyanamide and Glyoxal: Revisiting Intractable Biotars.Collaboration between primitive cell membranes and soluble catalystsChemical Evolution and the Evolutionary Definition of Life.Evaporite Borate-Containing Mineral Ensembles Make Phosphate Available and Regiospecifically Phosphorylate Ribonucleosides: Borate as a Multifaceted Problem Solver in Prebiotic Chemistry.Surveying the sequence diversity of model prebiotic peptides by mass spectrometry.Collision cross section predictions using 2-dimensional molecular descriptors.Foldamer hypothesis for the growth and sequence differentiation of prebiotic polymersThe Central Symbiosis of Molecular Biology: Molecules in MutualismEmergence of native peptide sequences in prebiotic replication networks.Conjecture and hypothesis: The importance of reality checksAmyloid Aggregates Arise from Amino Acid Condensations under Prebiotic Conditions.The Effect of Limited Diffusion and Wet-Dry Cycling on Reversible Polymerization Reactions: Implications for Prebiotic Synthesis of Nucleic AcidsSpontaneous mirror symmetry breaking and origin of biological homochirality.Chemical Transformations in Proto-Cytoplasmic Media. Phosphorus Coupling in the Silica Hydrogel Phase.Kinetics of prebiotic depsipeptide formation from the ester-amide exchange reaction.Quantitation of α-hydroxy acids in complex prebiotic mixtures via liquid chromatography/tandem mass spectrometry.Effects of Trimetaphosphate on Abiotic Formation and Hydrolysis of Peptides.Temperature oscillations near natural nuclear reactor cores and the potential for prebiotic oligomer synthesis.Can an Imidazole Be Formed from an Alanyl-Seryl-Glycine Tripeptide under Possible Prebiotic Conditions?Ribonucleotides and RNA Promote Peptide Chain Growth.Prebiotic formation of cyclic dipeptides under potentially early Earth conditions.Wet-dry cycles enable the parallel origin of canonical and non-canonical nucleosides by continuous synthesis.Prebiotic synthesis of phosphoenol pyruvate by α-phosphorylation-controlled triose glycolysis.Acetyl Phosphate as a Primordial Energy Currency at the Origin of LifeSystems protobiology: origin of life in lipid catalytic networksSulfidic Anion Concentrations on Early Earth for Surficial Origins-of-Life Chemistry
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P2860
Ester-Mediated Amide Bond Formation Driven by Wet-Dry Cycles: A Possible Path to Polypeptides on the Prebiotic Earth.
description
2015 nî lūn-bûn
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2015年の論文
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2015年学术文章
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2015年学术文章
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2015年学术文章
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2015年学术文章
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2015年学术文章
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2015年學術文章
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name
Ester-Mediated Amide Bond Form ...... ptides on the Prebiotic Earth.
@ast
Ester-Mediated Amide Bond Form ...... ptides on the Prebiotic Earth.
@en
type
label
Ester-Mediated Amide Bond Form ...... ptides on the Prebiotic Earth.
@ast
Ester-Mediated Amide Bond Form ...... ptides on the Prebiotic Earth.
@en
prefLabel
Ester-Mediated Amide Bond Form ...... ptides on the Prebiotic Earth.
@ast
Ester-Mediated Amide Bond Form ...... ptides on the Prebiotic Earth.
@en
P2093
P2860
P50
P356
P1476
Ester-Mediated Amide Bond Form ...... eptides on the Prebiotic Earth
@en
P2093
Irena Mamajanov
Martha A Grover
Nicholas V Hud
P2860
P304
P356
10.1002/ANIE.201503792
P407
P577
2015-07-15T00:00:00Z