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Mass spectrometric identification of proteins released from mitochondria undergoing permeability transition.

机译:质谱鉴定从经历渗透性转变的线粒体释放的蛋白质。

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Mitochondrial membrane permeabilization is a rate-limiting step of cell death. This process is, at least in part, mediated by opening of the permeability transition pore complex (PTPC) Several soluble proteins from the mitochondrial intermembrane space and matrix are involved in the activation of catabolic hydrolases including caspases and nucleases. We therefore investigated the composition of a mixture of proteins released from purified mitochondria upon PTPC opening. This mixture was subjected to a novel proteomics/mass spectrometric approach designed to identify a maximum of peptides. Peptides from a total of 79 known proteins or genes were identified. In addition, 21 matches with expressed sequence tags (EST) were obtained. Among the known proteins, several may have indirect or direct pro-apoptotic properties. Thus endozepine, a ligand of the peripheral benzodiazepin receptor (whose occupation may facilitate mitochondrial membrane permeabilization), was found among the released proteins. Several proteins involved in protein import were also released, namely the so-called X-linked deafness dystonia protein (DDP) and the glucose regulated protein 75 (grb75), meaning that protein import may become irreversibly disrupted in mitochondria of apoptotic cells. In addition, a number of catabolic enzymes are detected: arginase 1 (which degrades arginine), sulfite oxidase (which degrades sulfur amino acids), and epoxide hydrolase. Although the functional impact of each of these proteins on apoptosis remains elusive, the present data bank of mitochondrial proteins released upon PTPC opening should help further elucidation of the death process.
机译:线粒体膜通透性是细胞死亡的限速步骤。该过程至少部分地由通透性过渡孔复合物(PTPC)的开放介导的。来自线粒体膜间空间和基质的几种可溶性蛋白参与了分解代谢水解酶的活化,包括胱天蛋白酶和核酸酶。因此,我们研究了打开PTPC后从纯化的线粒体释放的蛋白质混合物的组成。对该混合物进行新颖的蛋白质组学/质谱分析法设计,以鉴定最大量的肽。从总共79种已知蛋白质或基因中鉴定出肽。另外,获得了21个具有表达的序列标签(EST)的匹配。在已知的蛋白质中,几种可能具有间接或直接的促凋亡特性。因此,在释放的蛋白质中发现了内啡肽,其为外周苯并二氮杂receptor受体的配体(其占领可促进线粒体膜通透性)。还释放了几种参与蛋白质导入的蛋白质,即所谓的X连锁性耳聋肌张力障碍蛋白(DDP)和葡萄糖调节蛋白75(grb75),这意味着蛋白质导入可能会在凋亡细胞的线粒体中不可逆转地受到破坏。此外,还检测到许多分解代谢酶:精氨酸酶1(降解精氨酸),亚硫酸盐氧化酶(降解硫氨基酸)和环氧化物水解酶。尽管每种蛋白质对细胞凋亡的功能影响仍然难以捉摸,但目前打开PTPC时释放的线粒体蛋白质数据库应有助于进一步阐明死亡过程。

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