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Identification of Functional Regions Defining Different Activity in Caspase-3 and Caspase-7 within Cells

机译:确定细胞内Caspase-3和Caspase-7活性不同的功能区

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摘要

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.
机译:半胱天冬酶是凋亡的关键,据报道主要执行者半胱天冬酶caspase-3和-7在活性,一级结构和三维结构方面相似。在这里,我们确定了细胞中caspase-3和-7的不同活性,并使用表达下调后表达几乎相等量的外源caspase-3,caspase-7和/或嵌合构建体的人类细胞检查了它们的结构与功能之间的关系。 caspase-3和-7的表达Caspase-3(在人类细胞中产生)在体外对低分子量底物的依赖于caspase-7的裂解活性要强得多,这取决于四个特定的氨基酸区域。然而,在细胞内,对于caspase-3而言,要比caspase-7对细胞底物发挥更大的蛋白酶活性,还需要另外三个区域。前四个区域中的三个和后三个区域显示为形成两个不同的三维结构,这些结构位于procaspase-7同源二聚体的相对两侧。此外,procaspase-3和-7揭示了依赖于五个氨基酸区域的细胞内特定同型二聚体形成活性,这五个氨基酸区域包括在对细胞内裂解活性至关重要的区域中。因此,人胱天蛋白酶3和-7在蛋白酶活性,特定的同二聚体形成活性和三维结构特征方面表现出差异,所有这些都是紧密相关的。

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