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Links from Protein

Items: 6

1.

ATP-dependent Clp protease adaptor ClpS

In the bacterial cytosol, ATP-dependent protein degradation is performed by several different chaperone-protease pairs, including ClpAP. ClpS directly influences the ClpAP machine by binding to the N-terminal domain of the chaperone ClpA. The degradation of ClpAP substrates, both SsrA-tagged proteins and ClpA itself, is specifically inhibited by ClpS. ClpS modifies ClpA substrate specificity, potentially redirecting degradation by ClpAP toward aggregated proteins [1]. [1]. 11931773. ClpS, a substrate modulator of the ClpAP machine.. Dougan DA, Reid BG, Horwich AL, Bukau B;. Mol Cell 2002;9:673-683.. [2]. 12426582. Structural analysis of the adaptor protein ClpS in complex with. the N-terminal domain of ClpA.. Zeth K, Ravelli RB, Paal K, Cusack S, Bukau B, Dougan DA;. Nat Struct Biol 2002;9:906-911. (from Pfam)

GO Terms:
Biological Process:
protein catabolic process (GO:0030163)
Date:
2024-08-14
Family Accession:
NF014655.5
Method:
HMM
2.
new record, indexing in progress
Family Accession:
3.
new record, indexing in progress
Family Accession:
4.

ATP-dependent Clp protease adaptor ClpS

ATP-dependent Clp protease adaptor ClpS modulates the specificity of protein degradation by the ClpAP chaperone-protease complex; binds to the N-terminal substrate-domain of ClpA thereby redirecting degradation by ClpAP towards aggregated proteins

Date:
2015-09-24
Family Accession:
10011103
Method:
Sparcle
5.

ATP-dependent Clp protease adapter ClpS

Gene:
clpS
Date:
2020-10-26
Family Accession:
NF000672.0
Method:
HMM
6.

ATP-dependent Clp protease adapter ClpS

Gene:
clpS
GO Terms:
Biological Process:
proteolysis (GO:0006508)
Date:
2022-01-26
Family Accession:
NF000670.0
Method:
HMM
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