4.6 Article

Structure of the drug target ClpC1 unfoldase in action provides insights on antibiotic mechanism of action

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 298, Issue 11, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jbc.2022.102553

Keywords

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Funding

  1. European Union (EU) [871037, 15695]
  2. CRIOMECORR project [ESFRI-2019-01-CSIC-16]
  3. Instruct-ERIC [15689]

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The unfoldase ClpC1 is an important drug target against tuberculosis, and its mechanism of action remains largely unknown. Using cryo-EM, we determined the structure of ClpC1 in different states and revealed the mechanism of ecumicin.
The unfoldase ClpC1 is one of the most exciting drug targets against tuberculosis. This AAA+ unfoldase works in coopera-tion with the ClpP1P2 protease and is the target of at least four natural product antibiotics: cyclomarin, ecumicin, lassomycin, and rufomycin. Although these molecules are promising starting points for drug development, their mechanisms of action remain largely unknown. Taking advantage of a middle domain mutant, we determined the first structure of Myco-bacterium tuberculosis ClpC1 in its apo, cyclomarin-, and ecumicin-bound states via cryo-EM. The obtained structure displays features observed in other members of the AAA+ family and provides a map for further drug development. While the apo and cyclomarin-bound structures are indistinguishable and have N-terminal domains that are invisible in their respective EM maps, around half of the ecumicin-bound ClpC1 particles display three of their six N-terminal domains in an extended conformation. Our structural observations suggest a mechanism where ecumicin functions by mimicking substrate binding, leading to ATPase activation and changes in protein degradation profile.

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