首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >An alpha-mercaptoacrylic acid derivative is a selective nonpeptide cell-permeable calpain inhibitor and is neuroprotective.
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An alpha-mercaptoacrylic acid derivative is a selective nonpeptide cell-permeable calpain inhibitor and is neuroprotective.

机译:α-巯基丙烯酸衍生物是选择性非肽可渗透细胞的钙蛋白酶抑制剂具有神经保护作用。

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摘要

Overactivation of calcium-activated neutral protease (calpain) has been implicated in the pathophysiology of several degenerative conditions, including stroke, myocardial ischemia, neuromuscular degeneration, and cataract formation. Alpha-mercaptoacrylate derivatives (exemplified by PD150606), with potent and selective inhibitory actions against calpain, have been identified. PD150606 exhibits the following characteristics: (i) Ki values for mu- and m-calpains of 0.21 microM and 0.37 microM, respectively, (ii) high specificity for calpains relative to other proteases, (iii) uncompetitive inhibition with respect to substrate, and (iv) it does not shield calpain against inactivation by the active-site inhibitor trans-(epoxysuccinyl)-L-leucyl-amido-3-methylbutane, suggesting a nonactive site action for PD150606. The recombinant calcium-binding domain from each of the large or small subunits of mu-calpain was found to interact with PD150606. In low micromolar range, PD15O6O6 inhibited calpain activity in two intact cell systems. The neuroprotective effects of this class of compound were also demonstrated by the ability of PD150606 to attenuate hypoxic/hypoglycemic injury to cerebrocortical neurons in culture and excitotoxic injury to Purkinje cells in cerebellar slices.
机译:钙激活的中性蛋白酶(钙蛋白酶)的过度活化与多种退行性疾病的病理生理有关,包括中风,心肌缺血,神经肌肉变性和白内障形成。已经鉴定了具有针对钙蛋白酶的有效和选择性抑制作用的α-巯基丙烯酸酯衍生物(以PD150606为例)。 PD150606具有以下特征:(i)mu-钙蛋白酶和m-钙蛋白酶的Ki值分别为0.21 microM和0.37 microM,(ii)钙蛋白酶相对于其他蛋白酶的特异性高,(iii)对底物的竞争性抑制,和(iv)它不能保护钙蛋白酶免受活性位点抑制剂反式-(环氧琥珀酰基)-L-亮氨酰-氨基-3-甲基丁烷的灭活作用,提示PD150606无活性。发现来自mu-钙蛋白酶的每个大或小的亚基的重组钙结合结构域与PD150606相互作用。在低微摩尔范围内,PD15O6O6抑制了两个完整细胞系统中的钙蛋白酶活性。 PD150606减轻培养物中对大脑皮层神经元的低氧/降血糖损伤和小脑切片中Purkinje细胞的兴奋性毒性损伤的能力也证明了此类化合物的神经保护作用。

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