首页> 外文期刊>British Journal of Cancer >Cleavage of caspases-1, -3, -6, -8 and -9 substrates by proteases in skeletal muscles from mice undergoing cancer cachexia
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Cleavage of caspases-1, -3, -6, -8 and -9 substrates by proteases in skeletal muscles from mice undergoing cancer cachexia

机译:蛋白酶对患有癌症恶病质的小鼠骨骼肌中的蛋白酶对caspases-1,-3,-6,-8和-9底物的裂解

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A prominent feature of several type of cancer is cachexia. This syndrome causes a marked loss of lean body mass and muscle wasting, and appears to be mediated by cytokines and tumour products. There are several proteases and proteolytic pathways that could be responsible for the protein breakdown. In the present study, we investigated whether caspases are involved in the proteolytic process of skeletal muscle catabolism observed in a murine model of cancer cachexia (MAC16), in comparison with a related tumour (MAC13), which does not induce cachexia. Using specific peptide substrates, there was an increase of 54% in the proteolytic activity of caspase-1, 84% of caspase-8, 98% of caspase-3 151% to caspase-6 and 177% of caspase-9, in the gastrocnemius muscle of animals bearing the MAC16 tumour (up to 25% weight loss), in relation to muscle from animals bearing the MAC13 tumour (1–5% weight loss). The dual pattern of 89 kDa and 25 kDa fragmentation of poly (ADP-ribose) polymerase (PARP) occurred in the muscle samples from animals bearing the MAC16 tumour and with a high amount of caspase-like activity. Cytochrome c was present in the cytosolic fractions of gastrocnemius muscles from both groups of animals, suggesting that cytochrome c release from mitochondria may be involved in caspase activation. There was no evidence for DNA fragmentation into a nucleosomal ladder typical of apoptosis in the muscles of either group of mice. This data supports a role for caspases in the catabolic events in muscle involved in the cancer cachexia syndrome. ? 2001 Cancer Research Campaign
机译:几种类型的癌症的突出特征是恶病质。该综合征导致瘦体重和肌肉浪费的明显减少,并且似乎由细胞因子和肿瘤产物介导。有几种蛋白酶和蛋白水解途径可能导致蛋白质分解。在本研究中,我们调查了胱天蛋白酶是否参与了在癌症恶病质(MAC16)小鼠模型中观察到的骨骼肌分解代谢的蛋白水解过程,与相关的肿瘤(MAC13)相比,后者不引起恶病质。使用特定的肽底物时,caspase-1的蛋白水解活性增加了54%,caspase-8的蛋白水解活性增加了84%,caspase-3的98%,caspase-6的增加了151%,caspase-9的177%。患有MAC16肿瘤的动物的腓肠肌肌肉(最多减轻25%体重),相对于患有MAC13肿瘤的动物的腓肠肌(体重减轻1-5%)。聚(ADP-核糖)聚合酶(PARP)的89 kDa和25 kDa断裂的双重模式发生在患有MAC16肿瘤且具有大量caspase样活性的动物的肌肉样品中。两组动物腓肠肌的细胞质中都存在细胞色素c,这表明线粒体释放的细胞色素c可能参与了caspase的活化。没有证据表明DNA断裂成任一组小鼠肌肉中典型的细胞凋亡的核小体阶梯。该数据支持胱天蛋白酶在参与癌症恶病质综合症的肌肉的分解代谢事件中的作用。 ? 2001年癌症研究运动

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