Kim Dong Young, Kim Kyeong Kyu
The Department of Molecular Cell Biology, Institute of Basic Science, Samsung Biomedical Research Institute, Sungkyunkwan University School of Medicine, Suwon 440-746, Korea.
J Mol Biol. 2008 Jun 13;379(4):760-71. doi: 10.1016/j.jmb.2008.04.036. Epub 2008 Apr 20.
ClpP and its ATPase compartment, ClpX or ClpA, remove misfolded proteins in cells and are of utmost importance in protein quality control. The ring hexamers of ClpA or ClpX recognize, unfold, and translocate target substrates into the degradation chamber of the double-ring tetradecamer of ClpP. The overall reaction scheme catalyzed by ClpXP or ClpAP has been proposed; however, the molecular mechanisms associated with substrate recognition and degradation have not yet been clarified in detail. To investigate these mechanisms, we determined the crystal structures of ClpP from Helicobacter pylori in complex with product peptides bound to the active site as well as in the apo state. In the complex structure, the peptides are zipped with two antiparallel strands of ClpP and point to the adjacent active site, thus providing structural explanations for the broad substrate specificity, the product inhibition and the processive degradation of substrates in the chamber. The structures also suggest that substrate binding causes local conformational changes around the active site that ultimately induce the active conformation of ClpP.
ClpP及其ATP酶组分ClpX或ClpA可清除细胞中错误折叠的蛋白质,在蛋白质质量控制中至关重要。ClpA或ClpX的环状六聚体识别、展开靶底物并将其转运至ClpP双环十四聚体的降解腔中。已提出ClpXP或ClpAP催化的总体反应方案;然而,与底物识别和降解相关的分子机制尚未详细阐明。为了研究这些机制,我们确定了幽门螺杆菌ClpP与结合在活性位点的产物肽以及无配体状态下的晶体结构。在复合物结构中,肽与ClpP的两条反平行链拉链式排列并指向相邻的活性位点,从而为广泛的底物特异性、产物抑制以及腔中底物的持续性降解提供了结构解释。这些结构还表明底物结合会导致活性位点周围的局部构象变化,最终诱导ClpP的活性构象。