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Cathepsin D Overexpressed by Cancer Cells Can Enhance Apoptosis-dependent Chemo-sensitivity Independently of Its Catalytic Activity

机译:癌症细胞过表达的组织蛋白酶D可以独立于其催化活性提高凋亡依赖性化学敏感性

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The aspartic protease cathepsin D (CD) is a key mediator of induced-apoptosis and its proteolytic activity has been generally involved in this event. During apoptosis, CD is translocated to the cytosol. Since CD is one of the lysosomal enzymes that requires a more acidic pH to be proteolytically-active relative to the cysteine lysosomal enzymes such as cathepsin-B and cathepsin-L, it is therefore open to question whether cytosolic CD might be able to cleave substrate(s) implicated in the apoptotic cascade. Here, we have investigated the role of (wild-type) wt CD and its proteolytically inactive counterpart overexpressed by 3Y1-Adl2 cancer cells during chemotherapeutic-induced cytotoxicity and apoptosis, as well as the relevance of CD catalytic function. We demonstrate that wt or mutated catalytically inactive CD strongly enhances chemo-sensitivity and apoptotic response to etoposide. Both wt and mutated inactive CD are translocated to the cytosol, increasing the release of cytochrome c, the activation of caspases-9 and caspases-3 and the induction of a caspase-dependent apoptosis. In addition, pretreatment of cells with the aspartic protease inhibitor, pepstatin A, does not prevent apoptosis. Interestingly, therefore, the stimulatory effect of CD on cell death is independent of its catalytic activity. Overall, our results imply that cytosolic CD stimulates apoptotic pathways by interacting with a member of the apoptotic machinery rather than by cleaving specific substrate(s).
机译:天冬氨酸蛋白酶组织蛋白酶D(CD)是诱导凋亡的关键介质,其蛋白水解活性通常已经参与了这一事件。在细胞凋亡期间,CD易于胞质溶胶。由于CD是相对于半胱氨酸溶酶体酶如组织蛋白酶-B和组织蛋白酶酶,因此需要更酸性pH的溶酶体酶之一,因此可以打开核糖CD可能能够切割底物的问题。 (s)涉及凋亡级联。在这里,我们研究了在化学治疗诱导的细胞毒性和细胞凋亡中由3Y1-ADL2癌细胞过表达过表达的(野生型)WT CD及其蛋白水解非活性对应的作用,以及Cd催化功能的相关性。我们证明WT或突变的催化活性CD强烈地增强了对依托泊苷的化学敏感性和凋亡反应。 WT和突变的惰性CD都易于旋转到胞质溶胶,增加细胞色素C的释放,胱天蛋白酶-9和Caspases-3的活化和诱导胱天蛋白酶依赖性细胞凋亡。此外,用天冬氨酸蛋白酶抑制剂,胃蛋白酶A预处理细胞,不会预防细胞凋亡。因此,有趣的是,CD对细胞死亡的刺激作用与其催化活性无关。总体而言,我们的结果暗示细胞溶溶胶Cd通过与凋亡机械的成员相互作用而不是通过切割特异性底物来刺激凋亡途径。

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