ETH Zurich, Institute of Molecular Biology & Biophysics, CH-8093, Zurich, Switzerland.
Research Institute of Molecular Pathology (IMP), Vienna, Austria.
Commun Biol. 2023 Mar 21;6(1):301. doi: 10.1038/s42003-023-04658-9.
Mycobacterium tuberculosis Clp proteases are targeted by several antitubercular compounds, including cyclomarin A (CymA). CymA exerts its toxicity by binding to AAA + chaperone ClpC1. Here, we show that CymA can also bind a partial homologue of ClpC1, known as ClpC2, and we reveal the molecular basis of these interactions by determining the structure of the M. tuberculosis ClpC2:CymA complex. Furthermore, we show deletion of clpC2 in Mycobacterium smegmatis increases sensitivity to CymA. We find CymA exposure leads to a considerable upregulation of ClpC2 via a mechanism in which binding of CymA to ClpC2 prevents binding of ClpC2 to its own promoter, resulting in upregulation of its own transcription in response to CymA. Our study reveals that ClpC2 not only senses CymA, but that through this interaction it can act as a molecular sponge to counteract the toxic effects of CymA and possibly other toxins targeting essential protease component ClpC1 in mycobacteria.
结核分枝杆菌 Clp 蛋白酶是几种抗结核化合物的靶点,包括环马菌素 A(CymA)。CymA 通过与 AAA+伴侣 ClpC1 结合发挥其毒性作用。在这里,我们表明 CymA 还可以与 ClpC1 的部分同源物 ClpC2 结合,我们通过确定结核分枝杆菌 ClpC2:CymA 复合物的结构揭示了这些相互作用的分子基础。此外,我们还表明,在耻垢分枝杆菌中缺失 clpC2 会增加对 CymA 的敏感性。我们发现 CymA 暴露会通过一种机制导致 ClpC2 的大量上调,该机制中 CymA 与 ClpC2 的结合阻止了 ClpC2 与其自身启动子的结合,从而导致其自身转录的上调以响应 CymA。我们的研究表明,ClpC2 不仅能感知 CymA,而且通过这种相互作用,它可以作为分子海绵来抵消 CymA 及其他可能靶向分枝杆菌中必需蛋白酶成分 ClpC1 的毒素的毒性作用。