Department of Biology, Georgia State University, Atlanta, GA 30303, USA.
Apoptosis. 2009 Oct;14(10):1135-44. doi: 10.1007/s10495-009-0388-9.
Caspase-mediated apoptosis has important roles in normal cell differentiation and aging and in many diseases including cancer, neuromuscular disorders and neurodegenerative diseases. Therefore, modulation of caspase activity and conformational states is of therapeutic importance. We report crystal structures of a new unliganded conformation of caspase-7 and the inhibited caspase-7 with the tetrapeptide Ac-YVAD-Cho. Different conformational states and mechanisms for substrate recognition have been proposed based on unliganded structures of the redundant apoptotic executioner caspase-3 and -7. The current study shows that the executioner caspase-3 and -7 have similar conformations for the unliganded active site as well as the inhibitor-bound active site. The new unliganded caspase-7 structure exhibits the tyrosine flipping mechanism in which the Tyr230 has rotated to block entry to the S2 binding site similar to the active site conformation of unliganded caspase-3. The inhibited structure of caspase-7/YVAD shows that the P4 Tyr binds the S4 region specific to polar residues at the expense of a main chain hydrogen bond between the P4 amide and carbonyl oxygen of caspase-7 Gln 276, which is similar to the caspase-3 complex. This new knowledge of the structures and conformational states of unliganded and inhibited caspases will be important for the design of drugs to modulate caspase activity and apoptosis.
Caspase 介导热凋亡在正常细胞分化和衰老以及包括癌症、神经肌肉疾病和神经退行性疾病在内的许多疾病中具有重要作用。因此,调节半胱天冬酶的活性和构象状态具有治疗意义。我们报告了一种新的无配体结合构象的 caspase-7 和与四肽 Ac-YVAD-Cho 结合的抑制型 caspase-7 的晶体结构。基于冗余凋亡执行器 caspase-3 和 -7 的无配体结构,已经提出了不同的构象状态和底物识别机制。目前的研究表明,执行器 caspase-3 和 -7 具有相似的无配体活性位点构象以及抑制剂结合的活性位点构象。新型无配体 caspase-7 结构表现出酪氨酸翻转机制,其中 Tyr230 已旋转以阻止进入 S2 结合位点,类似于无配体 caspase-3 的活性位点构象。抑制型 caspase-7/YVAD 结构表明,P4 酪氨酸结合 S4 区域,特异性地与极性残基结合,牺牲了 P4 酰胺和 caspase-7 Gln276 羰基氧之间的主链氢键,这与 caspase-3 复合物相似。这些无配体和抑制型半胱天冬酶的结构和构象状态的新知识对于设计调节半胱天冬酶活性和细胞凋亡的药物将非常重要。