Contemporary proteins can be traced back to a basic set of a few thousand domain prototypes. The origin of these domain prototypes, however, remains poorly understood. We have proposed that they arose from an ancestral set of peptides, which acted as cofactors of RNA-mediated catalysis and replication. Their ability to fold was an emergent property of peptide-RNA coevolution. The ribosome is the main survivor of this primordial RNA world and offers an excellent model system for retracing the steps that led to the folded proteins of today. We have retraced this emancipation from the RNA scaffold computationally and experimentally, by investigating the plausible ancestor in ribosomal proteins for a cytosolic protein fold, the tetratricopeptid...
Proteins are essential building blocks of living cells; indeed, life can be viewed as resulting subs...
The seemingly limitless diversity of proteins in nature arose from only a few thousand domain protot...
The seemingly limitless diversity of proteins in nature arose from only a few thousand domain protot...
Repetitive proteins are thought to have arisen through the amplification of subdomain-sized peptides...
Folded proteins are the essential catalysts of life, but the ability to fold is a rare, complicated,...
Repetitive proteins are thought to have arisen through the amplification of subdomain-sized peptides...
For the most part, contemporary proteins can be traced back to a basic set of a few thousand domainp...
For the most part, contemporary proteins can be traced back to a basic set of a few thousand domain ...
The seemingly limitless diversity of proteins in nature arose from only a few thousand domain protot...
Contemporary proteins arose by combinatorial shuffling and differentiation from a basic set of domai...
Since the time of the Last Universal Common Ancestor (LUCA), proteins have been the fundamental cata...
The most profound transition in the biochemistry of life is thought to have been the one from a prim...
Since the time of the Last Universal Common Ancestor (LUCA), proteins have been the fundamental cata...
Tetratricopeptide repeat (TPR) is a solenoid repeat protein facilitating various protein interaction...
The diversity of modern proteins arose through the combinatorial shuffling and differentiation of a ...
Proteins are essential building blocks of living cells; indeed, life can be viewed as resulting subs...
The seemingly limitless diversity of proteins in nature arose from only a few thousand domain protot...
The seemingly limitless diversity of proteins in nature arose from only a few thousand domain protot...
Repetitive proteins are thought to have arisen through the amplification of subdomain-sized peptides...
Folded proteins are the essential catalysts of life, but the ability to fold is a rare, complicated,...
Repetitive proteins are thought to have arisen through the amplification of subdomain-sized peptides...
For the most part, contemporary proteins can be traced back to a basic set of a few thousand domainp...
For the most part, contemporary proteins can be traced back to a basic set of a few thousand domain ...
The seemingly limitless diversity of proteins in nature arose from only a few thousand domain protot...
Contemporary proteins arose by combinatorial shuffling and differentiation from a basic set of domai...
Since the time of the Last Universal Common Ancestor (LUCA), proteins have been the fundamental cata...
The most profound transition in the biochemistry of life is thought to have been the one from a prim...
Since the time of the Last Universal Common Ancestor (LUCA), proteins have been the fundamental cata...
Tetratricopeptide repeat (TPR) is a solenoid repeat protein facilitating various protein interaction...
The diversity of modern proteins arose through the combinatorial shuffling and differentiation of a ...
Proteins are essential building blocks of living cells; indeed, life can be viewed as resulting subs...
The seemingly limitless diversity of proteins in nature arose from only a few thousand domain protot...
The seemingly limitless diversity of proteins in nature arose from only a few thousand domain protot...