| Literature DB >> 25695750 |
Malte Gersch1, Kirsten Famulla2, Maria Dahmen1, Christoph Göbl3, Imran Malik2, Klaus Richter1, Vadim S Korotkov1, Peter Sass2, Helga Rübsamen-Schaeff4, Tobias Madl5, Heike Brötz-Oesterhelt2, Stephan A Sieber1.
Abstract
The Clp protease complex degrades a multitude of substrates, which are engaged by a AAA+ chaperone such as ClpX and subsequently digested by the dynamic, barrel-shaped ClpP protease. Acyldepsipeptides (ADEPs) are natural product-derived antibiotics that activate ClpP for chaperone-independent protein digestion. Here we show that both protein and small-molecule activators of ClpP allosterically control the ClpP barrel conformation. We dissect the catalytic mechanism with chemical probes and show that ADEP in addition to opening the axial pore directly stimulates ClpP activity through cooperative binding. ClpP activation thus reaches beyond active site accessibility and also involves conformational control of the catalytic residues. Moreover, we demonstrate that substoichiometric amounts of ADEP potently prevent binding of ClpX to ClpP and, at the same time, partially inhibit ClpP through conformational perturbance. Collectively, our results establish the hydrophobic binding pocket as a major conformational regulatory site with implications for both ClpXP proteolysis and ADEP-based anti-bacterial activity.Entities:
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Year: 2015 PMID: 25695750 DOI: 10.1038/ncomms7320
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919