During the origin of life, the biological information of nucleic acid polymers must have increased to encode functional molecules (the RNA world). Ribozymes tend to be compositionally unbiased, as is the vast majority of possible sequence space. However, ribonucleotides vary greatly in synthetic yield, reactivity and degradation rate, and their non-enzymatic polymerization results in compositionally biased sequences. While natural selection could lead to complex sequences, molecules with some activity are required to begin this process. Was the emergence of compositionally diverse sequences a matter of chance, or could prebiotically plausible reactions counter chemical biases to increase the probability of finding a ribozyme? Our in silico ...
AbstractBackground: Nucleic acid replication via oligonucleotide ligation has been shown to be extre...
In this mini-review we present some experimental approaches to the important issue in the origin of ...
The biggest challenge for origin-of-life scientists is to account for the first self-replicating mol...
International audienceDuring the origin of life, the biological information of nucleic acid polymers...
During the origin of life, the biological information of nucleic acid polymers must have increased t...
International audienceDuring the origin of life, the biological information of nucleic acid polymers...
During the origin of life, the biological information of nucleic acid polymers must have increased t...
During the origin of life, the biological information of nucleic acid polymers must have increased t...
Biological RNA is a uniform polymer in three senses: it uses nucleotides of a single chirality; it u...
Biological RNA is a uniform polymer in three senses: it uses nucleotides of a single chirality; it u...
Abstract Background We hypothesize prebiotic evolution of self-replicating macro-molecules (Alberts,...
The capability to transmit information from generation to generation is an essential feature of life...
The origins of life require the emergence of informational polymers capable of reproduction. In the ...
Cellular life is based on interacting polymer networks that serve as catalysts, genetic information ...
Cellular life is based on interacting polymer networks that serve as catalysts, genetic information ...
AbstractBackground: Nucleic acid replication via oligonucleotide ligation has been shown to be extre...
In this mini-review we present some experimental approaches to the important issue in the origin of ...
The biggest challenge for origin-of-life scientists is to account for the first self-replicating mol...
International audienceDuring the origin of life, the biological information of nucleic acid polymers...
During the origin of life, the biological information of nucleic acid polymers must have increased t...
International audienceDuring the origin of life, the biological information of nucleic acid polymers...
During the origin of life, the biological information of nucleic acid polymers must have increased t...
During the origin of life, the biological information of nucleic acid polymers must have increased t...
Biological RNA is a uniform polymer in three senses: it uses nucleotides of a single chirality; it u...
Biological RNA is a uniform polymer in three senses: it uses nucleotides of a single chirality; it u...
Abstract Background We hypothesize prebiotic evolution of self-replicating macro-molecules (Alberts,...
The capability to transmit information from generation to generation is an essential feature of life...
The origins of life require the emergence of informational polymers capable of reproduction. In the ...
Cellular life is based on interacting polymer networks that serve as catalysts, genetic information ...
Cellular life is based on interacting polymer networks that serve as catalysts, genetic information ...
AbstractBackground: Nucleic acid replication via oligonucleotide ligation has been shown to be extre...
In this mini-review we present some experimental approaches to the important issue in the origin of ...
The biggest challenge for origin-of-life scientists is to account for the first self-replicating mol...