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Ca2+对肌肉中蛋白质降解的刺激作用是由前列腺素E2介导的,且不需要钙激活蛋白酶。

The stimulation of protein degradation in muscle by Ca2+ is mediated by prostaglandin E2 and does not require the calcium-activated protease.

作者信息

Rodemann H P, Waxman L, Goldberg A L

出版信息

J Biol Chem. 1982 Aug 10;257(15):8716-23.

PMID:6807980
Abstract

Treatment of isolated rat skeletal muscles with the Ca2+ ionophores, A23187 or ionomycin, increased overall protein degradation 45-140%. Removal of extracellular Ca2+ reduced overall proteolysis and most of the stimulation by A23187. Treatment of the muscles with the sulfhydryl inhibitor, mersalyl, completely inactivated the Ca2+-activated protease without altering overall protein breakdown or the stimulation by A23187. This agent did not inhibit the lysosomal protease, cathepsin B, in the muscle; however, leupeptin and Ep-475, which inhibit this enzyme in intact cells, decreased the stimulation of proteolysis by Ca2+. Thus, this effect does not require the Ca2+-activated enzyme, but seems to involve lysosomal proteases. Prostaglandin E2 (PGE2) and its precursor arachidonic acid, were previously shown to stimulate protein degradation in rat muscle through an effect on lysosomal function. We tested whether the enhancement of muscle proteolysis by Ca2+ ionophores may result from increased synthesis of PGE2. A23187 increased release of PGE2 and PGF2 alpha by the muscles 3-4-fold. High extracellular potassium also markedly promotes muscle proteolysis, apparently by increasing intracellular Ca2+, and this treatment also stimulates prostaglandin production. Indomethacin and aspirin, which inhibit the cyclooxygenase, and mepacrine, which inhibits the Ca2+-activated phospholipase A2, markedly reduced the increase in prostaglandin production. These agents also reduced the enhancement of protein degradation by Ca2+ or high K+. Thus, Ca2+ appears to promote protein breakdown by stimulating synthesis of PGE2, which in turn activates the lysosomal apparatus.

摘要

用钙离子载体A23187或离子霉素处理离体大鼠骨骼肌,可使总蛋白降解增加45% - 140%。去除细胞外钙离子可降低总蛋白水解以及A23187的大部分刺激作用。用巯基抑制剂汞撒利处理肌肉,可使钙离子激活的蛋白酶完全失活,而不改变总蛋白分解或A23187的刺激作用。该试剂不抑制肌肉中的溶酶体蛋白酶组织蛋白酶B;然而,在完整细胞中抑制该酶的亮抑酶肽和Ep - 475可降低钙离子对蛋白水解的刺激作用。因此,这种作用不需要钙离子激活的酶,但似乎涉及溶酶体蛋白酶。前列腺素E2(PGE2)及其前体花生四烯酸,先前已被证明可通过对溶酶体功能的影响来刺激大鼠肌肉中的蛋白降解。我们测试了钙离子载体增强肌肉蛋白水解是否可能是由于PGE2合成增加所致。A23187使肌肉中PGE2和PGF2α的释放增加3 - 4倍。高细胞外钾也明显促进肌肉蛋白水解,显然是通过增加细胞内钙离子实现的,并且这种处理也刺激前列腺素的产生。抑制环氧化酶的吲哚美辛和阿司匹林,以及抑制钙离子激活的磷脂酶A2的米帕林,可显著降低前列腺素产生的增加。这些试剂也降低了钙离子或高钾对蛋白降解的增强作用。因此,钙离子似乎通过刺激PGE2的合成来促进蛋白分解,而PGE2反过来又激活溶酶体装置。

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