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J Proteins Catalytically Activate Hsp70 Molecules to Trap a Wide Range of Peptide Sequences

Data up to Jan 2025

Published1998
Citations246
References50

Total Citations Per Year

Abstract

References (50)

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1996 • 304 citations

A yeast gene important for protein assembly into the endoplasmic reticulum and the nucleus has homology to DnaJ, an Escherichia coli heat shock protein.

1989 • 296 citations

A Sec63p-BiP complex from yeast is required for protein translocation in a reconstituted proteoliposome.

1993 • 290 citations

Different conformations for the same polypeptide bound to chaperones DnaK and GroEL

1992 • 285 citations

The NH2-terminal 108 amino acids of the Escherichia coli DnaJ protein stimulate the ATPase activity of DnaK and are sufficient for lambda replication.

1994 • 285 citations

A cycle of binding and release of the DnaK, DnaJ and GrpE chaperones regulates activity of the Escherichia coli heat shock transcription factor sigma32.

1996 • 281 citations

Role of the J-domain in the cooperation of Hsp40 with Hsp70

1998 • 279 citations

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1994 • 147 citations

Protein Transport by Purified Yeast Sec Complex and Kar2p Without Membranes

1997 • 146 citations

In Vitro Dissociation of BiP-Peptide Complexes Requires a Conformational Change in BiP after ATP Binding but Does Not Require ATP Hydrolysis

1995 • 143 citations

The 58,000-dalton cellular inhibitor of the interferon-induced double-stranded RNA-activated protein kinase (PKR) is a member of the tetratricopeptide repeat family of proteins.

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The DnaJ chaperone catalytically activates the DnaK chaperone to preferentially bind the sigma 32 heat shock transcriptional regulator.

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The DnaJ domain of polyomavirus large T antigen is required to regulate Rb family tumor suppressor function

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ATP Hydrolysis Is Required for the DnaJ-dependent Activation of DnaK Chaperone for Binding to Both Native and Denatured Protein Substrates

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Real Time Kinetics of the DnaK/DnaJ/GrpE Molecular Chaperone Machine Action

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Extragenic suppressors of mutations in the cytoplasmic C terminus of SEC63 define five genes in Saccharomyces cerevisiae.

1993 • 56 citations

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J Proteins Catalytically Activate Hsp70 Molecules to Trap a Wide Range of Peptide… (1998) – Molecular Cell | Metascience Observatory Explorer