Laboratory of Molecular and Cellular Biology, Department of Animal Development and Physiology, Graduate School of Biostudies, Kyoto University, Kyoto 606-8501, Japan.
J Biol Chem. 2010 Aug 13;285(33):25418-25. doi: 10.1074/jbc.M110.126573. Epub 2010 Jun 21.
Caspases are central to apoptosis, and the principal executioner caspases, caspase-3 and -7, were reported to be similar in activity, primary structure, and three-dimensional structure. Here, we identified different activity in caspase-3 and -7 within cells and examined the relationship between their structure and function using human cells expressing almost equal amounts of exogenous caspase-3, caspase-7, and/or chimeric constructs after down-regulation of endogenous caspase-3 and -7 expression. Caspase-3 (produced in human cells) showed much stronger cleaving activity than caspase-7 against a low molecular weight substrate in vitro dependent on four specific amino acid regions. Within cells, however, an additional three regions were required for caspase-3 to exert much stronger protease activity than caspase-7 against cellular substrates. Three of the former four regions and the latter three regions were shown to form two different three-dimensional structures that were located at the interface of the homodimer of procaspase-7 on opposite sides. In addition, procaspase-3 and -7 revealed specific homodimer-forming activity within cells dependent on five amino acid regions, which were included in the regions critical to the cleaving activity within cells. Thus, human caspase-3 and -7 exhibit differences in protease activity, specific homodimer-forming activity, and three-dimensional structural features, all of which are closely interrelated.
半胱天冬酶在细胞凋亡中起着核心作用,主要的执行半胱天冬酶 caspase-3 和 caspase-7 的活性、一级结构和三维结构相似。在这里,我们在细胞内鉴定了 caspase-3 和 caspase-7 的不同活性,并使用在下调内源性 caspase-3 和 caspase-7 表达后表达几乎等量外源 caspase-3、caspase-7 和/或嵌合构建体的人细胞,检查了它们的结构和功能之间的关系。在体外,依赖于四个特定的氨基酸区域,人源 caspase-3(在人细胞中产生)显示出比 caspase-7 更强的针对低分子量底物的切割活性。然而,在细胞内,caspase-3 要发挥比 caspase-7 更强的针对细胞底物的蛋白酶活性,还需要另外三个区域。前四个区域中的三个和后三个区域中的三个被证明形成两个不同的三维结构,位于对面的 procaspase-7 同源二聚体界面上。此外,procaspase-3 和 -7 在细胞内显示出特定的同源二聚体形成活性,这依赖于五个氨基酸区域,这些区域包括在细胞内切割活性关键的区域。因此,人源 caspase-3 和 caspase-7 在蛋白酶活性、特定的同源二聚体形成活性和三维结构特征方面存在差异,所有这些都密切相关。