The yeast Hsp70 chaperone Ssb interacts with ribosomes and nascent polypeptides to assist protein folding. To reveal its working principle, we determined the nascent chain-binding pattern of Ssb at near-residue resolution by in vivo selective ribosome profiling. Ssb associates broadly with cytosolic, nuclear, and hitherto unknown substrate classes of mitochondrial and endoplasmic reticulum (ER) nascent proteins, supporting its general chaperone function. Ssb engages most substrates by multiple binding-release cycles to a degenerate sequence enriched in positively charged and aromatic amino acids. Timely association with this motif upon emergence at the ribosomal tunnel exit requires ribosome-associated complex (RAC) but not nascent polypept...
Proteostasis needs to be tightly controlled to meet the cellular demand for correctly de novo folded...
Various cellular quality control mechanisms support proteostasis. While, ribosome-associated chapero...
Proteostasis needs to be tightly controlled to meet the cellular demand for correctly de novo folded...
SummaryIn eukaryotic cells a molecular chaperone network associates with translating ribosomes, assi...
AbstractThe Hsp70 homolog Ssb directly binds to the ribosome and contacts a variety of newly synthes...
The yeast Hsp70/40 system SSB–RAC (stress 70 B–ribosome-associated complex) binds to ribosomes and c...
Ssbs of Saccharomyces cerevisiae are ribosome-associated molecular chaperones, which can be cross-li...
AbstractThe Hsp70 homolog Ssb directly binds to the ribosome and contacts a variety of newly synthes...
SummaryIn eukaryotic cells a molecular chaperone network associates with translating ribosomes, assi...
Polypeptides exiting the ribosome must fold and assemble in the crowded environment of the cell. Cha...
Cells are exposed to a variety of environmental and physiological changes including temperature, pH ...
Protein biogenesis starts with ribosome synthesizing nascent polypeptide chain. Ribosome is a major ...
The folding of newly synthesized proteins into their native structures is a fundamental but failure ...
The folding of newly synthesized proteins into their native structures is a fundamental but failure ...
Proteostasis needs to be tightly controlled to meet the cellular demand for correctly de novo folded...
Proteostasis needs to be tightly controlled to meet the cellular demand for correctly de novo folded...
Various cellular quality control mechanisms support proteostasis. While, ribosome-associated chapero...
Proteostasis needs to be tightly controlled to meet the cellular demand for correctly de novo folded...
SummaryIn eukaryotic cells a molecular chaperone network associates with translating ribosomes, assi...
AbstractThe Hsp70 homolog Ssb directly binds to the ribosome and contacts a variety of newly synthes...
The yeast Hsp70/40 system SSB–RAC (stress 70 B–ribosome-associated complex) binds to ribosomes and c...
Ssbs of Saccharomyces cerevisiae are ribosome-associated molecular chaperones, which can be cross-li...
AbstractThe Hsp70 homolog Ssb directly binds to the ribosome and contacts a variety of newly synthes...
SummaryIn eukaryotic cells a molecular chaperone network associates with translating ribosomes, assi...
Polypeptides exiting the ribosome must fold and assemble in the crowded environment of the cell. Cha...
Cells are exposed to a variety of environmental and physiological changes including temperature, pH ...
Protein biogenesis starts with ribosome synthesizing nascent polypeptide chain. Ribosome is a major ...
The folding of newly synthesized proteins into their native structures is a fundamental but failure ...
The folding of newly synthesized proteins into their native structures is a fundamental but failure ...
Proteostasis needs to be tightly controlled to meet the cellular demand for correctly de novo folded...
Proteostasis needs to be tightly controlled to meet the cellular demand for correctly de novo folded...
Various cellular quality control mechanisms support proteostasis. While, ribosome-associated chapero...
Proteostasis needs to be tightly controlled to meet the cellular demand for correctly de novo folded...