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Interference with Ca2+-Dependent Proteolysis Does Not Alter the Course of Muscle Wasting in Experimental Cancer Cachexia.

机译:干扰Ca2 +依赖的蛋白水解作用不会改变实验性恶病质中的肌肉消耗过程。

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摘要

Protein hypercatabolism significantly contributes to the onset and progression of muscle wasting in cancer cachexia. In this regard, a major role is played by the ATP-ubiquitin-proteasome-dependent pathway and by autophagy. However, little is known about the relevance of the Ca2+-dependent proteolytic system. Since previous results suggested that this pathway is activated in the skeletal muscle of tumor hosts, the present study was aimed to investigate whether inhibition of Ca2+-dependent proteases (calpains) may improve cancer-induced muscle wasting. Two experimental models of cancer cachexia were used, namely the AH-130 Yoshida hepatoma and the C26 colon carcinoma. The Ca2+-dependent proteolytic system was inhibited by treating the animals with dantrolene or by overexpressing in the muscle calpastatin, the physiologic inhibitor of Ca2+-dependent proteases. The results confirm that calpain-1 is overexpressed and calpastatin is reduced in the muscle of rats implanted with the AH-130 hepatoma, and show for the first time that the Ca2+-dependent proteolytic system is overactivated also in the C26-bearing mice. Yet, administration of dantrolene, an inhibitor of the Ca2+-dependent proteases, did not modify tumor-induced body weight loss and muscle wasting in the AH-130 hosts. Dantrolene was also unable to reduce the enhancement of protein degradation rates occurring in rats bearing the AH-130 hepatoma. Similarly, overexpression of calpastatin in the tibialis muscle of the C26 hosts did not improve muscle wasting at all. These observations suggest that inhibiting a single proteolytic system is not a good strategy to contrast cancer-induced muscle wasting. In this regard, a more general and integrated approach aimed at targeting the catabolic stimuli rather than the proteolytic activity of a single pathway would likely be the most appropriate therapeutic intervention.
机译:在癌症恶病质中,蛋白质过度分解代谢显着促进肌肉消瘦的发生和进展。在这方面,ATP泛素-蛋白酶体依赖性途径和自噬发挥着重要作用。然而,关于Ca 2+依赖性蛋白水解系统的相关性知之甚少。由于先前的结果表明该途径在肿瘤宿主的骨骼肌中被激活,因此本研究旨在研究抑制Ca2 +依赖性蛋白酶(钙蛋白酶)是否可以改善癌症引起的肌肉消瘦。使用了两种癌症恶病质的实验模型,即AH-130吉田肝癌和C26结肠癌。 Ca2 +依赖的蛋白水解系统通过用丹特罗治疗动物或在肌肉钙调素中过表达来抑制,Capastatin是Ca 2+依赖的蛋白酶的生理抑制剂。结果证实,在植入了AH-130肝癌的大鼠的肌肉中calpain-1过度表达,而calpastatin减少,并且首次证明了Ca2 +依赖性蛋白水解系统在C26小鼠中也被过度激活。然而,在AH-130宿主中,丹特罗林(一种依赖Ca2 +的蛋白酶的抑制剂)的给药并未改变肿瘤引起的体重减轻和肌肉消耗。丹特罗也不能降低在患有AH-130肝癌的大鼠中发生的蛋白质降解速率的提高。同样,C26宿主的胫骨肌中钙蛋白酶抑制素的过度表达根本没有改善肌肉的浪费。这些观察结果表明,抑制单个蛋白水解系统不是与癌症诱发的肌肉消瘦相提并论的好策略。在这方面,针对靶向分解代谢刺激而不是单一途径的蛋白水解活性的更通用和综合的方法可能是最合适的治疗手段。

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