Forsyth Charles M, Lemongello Donna, LaCount Douglas J, Friesen Paul D, Fisher Andrew J
Department of Chemistry, Section of Molecular and Cellular Biology, University of California, Davis 95616, USA.
J Biol Chem. 2004 Feb 20;279(8):7001-8. doi: 10.1074/jbc.M312472200. Epub 2003 Nov 27.
Caspases play an essential role in the execution of apoptosis. These cysteine proteases are highly conserved among metazoans and are translated as inactive zymogens, which are activated by proteolytic cleavages to generate the large and small subunits and remove the N-terminal prodomain. The 2.3 A resolution crystal structure of active Sf-caspase-1, the principal effector caspase of the insect Spodoptera frugiperda, is presented here. The structure represents the first nonhuman caspase to be resolved. The structure of the cleaved and active protease was determined with the tetrapeptide inhibitor N-acetyl-Asp-Glu-Val-Asp-chloromethylketone covalently bonded to the active site cysteine. As expected, the overall fold of Sf-caspase-1 is exceedingly similar to that of the five active caspases from humans solved to date. The overall structure and active site arrangement of Sf-caspase-1 is most comparable with that of the human effector caspases, with which it shares highest sequence homology. The most prominent structural difference with Sf-caspase-1 is the position of the N-terminal region of the large subunit. Unlike the N terminus of human caspases, the N terminus of Sf-caspase-1 originates from the active site side where it interacts with active site loop L2 and then extends to the backside of the heterodimer. This unusual structural arrangement raises the possibility that the N-terminal prodomain plays a regulatory role during effector caspase activation or enzyme activity in insects.
半胱天冬酶在细胞凋亡的执行过程中发挥着至关重要的作用。这些半胱氨酸蛋白酶在多细胞动物中高度保守,以无活性的酶原形式被翻译出来,通过蛋白水解切割被激活,从而产生大亚基和小亚基,并去除N端前结构域。本文展示了活性Sf - 半胱天冬酶 - 1(昆虫草地贪夜蛾的主要效应半胱天冬酶)分辨率为2.3 Å的晶体结构。该结构是首个被解析的非人类半胱天冬酶结构。切割后的活性蛋白酶结构是通过与活性位点半胱氨酸共价结合的四肽抑制剂N - 乙酰 - 天冬氨酸 - 谷氨酸 - 缬氨酸 - 天冬氨酸 - 氯甲基酮确定的。正如预期的那样,Sf - 半胱天冬酶 - 1的整体折叠与迄今为止已解析的来自人类的五种活性半胱天冬酶极为相似。Sf - 半胱天冬酶 - 1的整体结构和活性位点排列与人类效应半胱天冬酶最为相似,与之具有最高的序列同源性。与Sf - 半胱天冬酶 - 1最显著的结构差异在于大亚基N端区域的位置。与人类半胱天冬酶的N端不同,Sf - 半胱天冬酶 - 1的N端起源于活性位点一侧,在那里它与活性位点环L2相互作用,然后延伸至异二聚体的背面。这种不寻常的结构排列增加了N端前结构域在昆虫效应半胱天冬酶激活或酶活性过程中发挥调节作用的可能性。