Hsp40s are ubiquitous, conserved proteins which function with molecular chaperones of the Hsp70 class. Sis1 is an essential Hsp40 of the cytosol of Saccharomyces cerevisiae, thought to be required for initiation of translation. We carried out a genetic analysis to determine the regions of Sis1 required to perform its key function(s). A C-terminal truncation of Sis1, removing 231 amino acids but retaining the N-terminal 121 amino acids encompassing the J domain and the glycine-phenylalanine-rich (G-F) region, was able to rescue the inviability of a Dsis1 strain. The yeast cytosol contains other Hsp40s, including Ydj1. To determine which regions carried the critical determinants of Sis1 function, we constructed chimeric genes containing porti...
By binding to a multitude of polypeptide substrates, Hsp70-based molecular chaperone systems perform...
Hsp40s play an essential role in protein metabolism by regulating the polypeptide binding and releas...
<div><p>By binding to a multitude of polypeptide substrates, Hsp70-based molecular chaperone systems...
Ydj1 and Sis1 are structurally and functionally distinct Hsp40 proteins of the yeast cytosol. Sis1 i...
Abstract Background Ydj1 and Sis1 are structurally and functionally distinct Hsp40 proteins of the y...
Sis1 and Ydj1, functionally distinct heat shock protein (Hsp)40 molecular chaperones of the yeast cy...
Sis1 is an essential yeast Type II Hsp40 protein that assists cytosolic Hsp70 Ssa1 in the facilitati...
The 70-kDa heat shock proteins are molecular chap-erones that participate in a variety of cellular f...
Protein folding, refolding and degradation are essential for cellular life and are regulated by prot...
Protein folding, refolding and degradation are essential for cellular life and are regulated by prot...
Hsp40 family members regulate Hsp70s ability to bind nonnative polypeptides and thereby play an esse...
Heat shock protein (Hsp)40s play an essential role in protein metabolism by regulating the polypepti...
Yeast prions are heritable amyloid aggregates of functional yeast proteins; their propagation to sub...
The Saccharomyces cerevisiae SIS1 gene was identified as a high copy number suppressor of the slow g...
The S. cerevisiae SIS1 gene is essential and encodes a heat shock protein with similarity to the bac...
By binding to a multitude of polypeptide substrates, Hsp70-based molecular chaperone systems perform...
Hsp40s play an essential role in protein metabolism by regulating the polypeptide binding and releas...
<div><p>By binding to a multitude of polypeptide substrates, Hsp70-based molecular chaperone systems...
Ydj1 and Sis1 are structurally and functionally distinct Hsp40 proteins of the yeast cytosol. Sis1 i...
Abstract Background Ydj1 and Sis1 are structurally and functionally distinct Hsp40 proteins of the y...
Sis1 and Ydj1, functionally distinct heat shock protein (Hsp)40 molecular chaperones of the yeast cy...
Sis1 is an essential yeast Type II Hsp40 protein that assists cytosolic Hsp70 Ssa1 in the facilitati...
The 70-kDa heat shock proteins are molecular chap-erones that participate in a variety of cellular f...
Protein folding, refolding and degradation are essential for cellular life and are regulated by prot...
Protein folding, refolding and degradation are essential for cellular life and are regulated by prot...
Hsp40 family members regulate Hsp70s ability to bind nonnative polypeptides and thereby play an esse...
Heat shock protein (Hsp)40s play an essential role in protein metabolism by regulating the polypepti...
Yeast prions are heritable amyloid aggregates of functional yeast proteins; their propagation to sub...
The Saccharomyces cerevisiae SIS1 gene was identified as a high copy number suppressor of the slow g...
The S. cerevisiae SIS1 gene is essential and encodes a heat shock protein with similarity to the bac...
By binding to a multitude of polypeptide substrates, Hsp70-based molecular chaperone systems perform...
Hsp40s play an essential role in protein metabolism by regulating the polypeptide binding and releas...
<div><p>By binding to a multitude of polypeptide substrates, Hsp70-based molecular chaperone systems...