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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Effect of phosphatidylinositol and inside-out erythrocyte vesicles on autolysis of mu- and m-calpain from bovine skeletal muscle
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Effect of phosphatidylinositol and inside-out erythrocyte vesicles on autolysis of mu- and m-calpain from bovine skeletal muscle

机译:磷脂酰肌醇和内而外红细胞囊泡对牛骨骼肌mu-和m-calpain自溶的影响

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The finding that phospholipid micelles lowered the Ca2+ concentration required for autolysis of the calpains led to a hypothesis suggesting that the calpains are translocated to the plasma membrane where they interact with phospholipids to initiate their autolysis. However, the effect of plasma membranes themselves on the Ca2+ concentration required for calpain autolysis has never been reported. Also, if interaction with a membrane lowers the Ca2+ required for autolysis, the membrane-bound-calpain must autolyze itself, because it would be the only calpain having the reduced Ca2+ requirement. This implies that the autolysis is an intramolecular process, although several studies have shown that autolysis of the calpains in an in vitro assay and in the absence of phospholipid is an intermolecular process. Inside-out vesicles prepared from erythrocytes had no effect on the Ca2+ concentration required for autolysis of either mu- or m-calpain, although phosphatidylinositol (PI) decreased the Ca2+ concentration required for autolysis of the same calpains. The presence of a substrate for the calpains, beta-casein, reduced the rate of autolysis of both mu- and m-calpain both in the presence and in the absence of PI, suggesting that mu- and m-calpain autolysis is an intermolecular process in the presence of PI just as it is in its absence. Because IOV have no effect on the Ca2+ concentration required for calpain autolysis, association with the plasma membrane, at least with erythrocyte plasma membranes, does not initiate calpain autolysis by reducing the Ca2+ concentration required for autolysis as suggested by the membrane-activation hypothesis. Interaction with a membrane may serve to bind calpains to their substrates rather than promoting autolysis. (C) 2004 Elsevier B.V. All rights reserved.
机译:磷脂胶束降低了钙蛋白酶自溶所需的Ca2 +浓度的发现导致了一个假说,表明钙蛋白酶被转移到质膜,在质膜中它们与磷脂相互作用以启动其自溶作用。但是,尚未报道质膜本身对钙蛋白酶自溶所需的Ca2 +浓度的影响。而且,如果与膜的相互作用降低了自溶所需的Ca2 +,则膜结合钙蛋白酶必须自身溶解,因为它将是唯一具有降低的Ca2 +需求的钙蛋白酶。这暗示自溶是分子内过程,尽管一些研究表明,在体外测定中并且在没有磷脂的情况下钙蛋白酶的自溶是分子间过程。尽管磷脂酰肌醇(PI)降低了相同钙蛋白酶自溶所需的Ca2 +浓度,但由红细胞制备的由内而外的囊泡对mu-或m-钙蛋白酶自溶所需的Ca2 +浓度没有影响。钙蛋白酶底物β-酪蛋白的存在降低了有和无PI时mu-和m-calpain的自溶速率,这表明mu-和m-calpain自溶是一种分子间过程在没有PI的情况下,也是如此。由于IOV对钙蛋白酶自溶所需的Ca2 +浓度没有影响,因此与质膜,至少与红细胞质膜结合,不会通过降低膜活化假说所建议的自溶所需的Ca2 +浓度来启动钙蛋白酶自溶。与膜的相互作用可能有助于将钙蛋白酶结合到其底物上,而不是促进自溶作用。 (C)2004 Elsevier B.V.保留所有权利。

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