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ATP-dependent proteases differ substantially in their ability to unfold globular proteins.


ABSTRACT: ATP-dependent proteases control the concentrations of hundreds of regulatory proteins and remove damaged or misfolded proteins from cells. They select their substrates primarily by recognizing sequence motifs or covalent modifications. Once a substrate is bound to the protease, it has to be unfolded and translocated into the proteolytic chamber to be degraded. Some proteases appear to be promiscuous, degrading substrates with poorly defined targeting signals, which suggests that selectivity may be controlled at additional levels. Here we compare the abilities of representatives from all classes of ATP-dependent proteases to unfold a model substrate protein and find that the unfolding abilities range over more than 2 orders of magnitude. We propose that these differences in unfolding abilities contribute to the fates of substrate proteins and may act as a further layer of selectivity during protein destruction.

SUBMITTER: Koodathingal P 

PROVIDER: S-EPMC2707231 | biostudies-literature | 2009 Jul

REPOSITORIES: biostudies-literature

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ATP-dependent proteases differ substantially in their ability to unfold globular proteins.

Koodathingal Prakash P   Jaffe Neil E NE   Kraut Daniel A DA   Prakash Sumit S   Fishbain Susan S   Herman Christophe C   Matouschek Andreas A  

The Journal of biological chemistry 20090421 28


ATP-dependent proteases control the concentrations of hundreds of regulatory proteins and remove damaged or misfolded proteins from cells. They select their substrates primarily by recognizing sequence motifs or covalent modifications. Once a substrate is bound to the protease, it has to be unfolded and translocated into the proteolytic chamber to be degraded. Some proteases appear to be promiscuous, degrading substrates with poorly defined targeting signals, which suggests that selectivity may  ...[more]

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