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DnaK Chaperone-dependent Disaggregation by Caseinolytic Peptidase B (ClpB) Mutants Reveals Functional Overlap in the N-terminal Domain and Nucleotide-binding Domain-1 Pore Tyrosine
被引:34
|作者:
Doyle, Shannon M.
[1
]
Hoskins, Joel R.
[1
]
Wickner, Sue
[1
]
机构:
[1] NCI, Mol Biol Lab, NIH, Bethesda, MD 20892 USA
基金:
美国国家卫生研究院;
关键词:
ESCHERICHIA-COLI;
PROTEIN DISAGGREGATION;
SUBSTRATE RECOGNITION;
AGGREGATED PROTEINS;
ATP HYDROLYSIS;
AAA;
HSP104;
THERMOTOLERANCE;
ATPASES;
HSP70;
D O I:
10.1074/jbc.M112.383091
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
Protein disaggregation in Escherichia coli is carried out by ClpB, an AAA(+) (ATPases associated with various cellular activities) molecular chaperone, together with the DnaK chaperone system. Conformational changes in ClpB driven by ATP binding and hydrolysis promote substrate binding, unfolding, and translocation. Conserved pore tyrosines in both nucleotide-binding domain-1 (NBD-1) and -2 (NBD-2), which reside in flexible loops extending into the central pore of the ClpB hexamer, bind substrates. When the NBD-1 pore loop tyrosine is substituted with alanine (Y251A), ClpB can collaborate with the DnaK system in disaggregation, although activity is reduced. The N-domain has also been implicated in substrate binding, and like the NBD-1 pore loop tyrosine, it is not essential for disaggregation activity. To further probe the function and interplay of the ClpB N-domain and the NBD-1 pore loop, we made a double mutant with an N-domain deletion and a Y251A substitution. This ClpB double mutant is inactive in substrate disaggregation with the DnaK system, although each single mutant alone can function with DnaK. Our data suggest that this loss in activity is primarily due to a decrease in substrate engagement by ClpB prior to substrate unfolding and translocation and indicate an overlapping function for the N-domain and NBD-1 pore tyrosine. Furthermore, the functional overlap seen in the presence of the DnaK system is not observed in the absence of DnaK. For innate ClpB unfolding activity, the NBD-1 pore tyrosine is required, and the presence of the N-domain is insufficient to overcome the defect of the ClpB Y251A mutant.
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页码:28470 / 28479
页数:10
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