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1-甲基-4-苯基吡啶鎓及其4-苯基吡啶类似物在内膜制剂中的抑制机制表征

Characterization of the inhibitory mechanism of 1-methyl-4-phenylpyridinium and 4-phenylpyridine analogs in inner membrane preparations.

作者信息

Gluck M R, Krueger M J, Ramsay R R, Sablin S O, Singer T P, Nicklas W J

机构信息

Department of Neurology, University of Medicine and Dentistry New Jersey-Robert Wood Johnson Medical School, Piscataway 08854-5635.

出版信息

J Biol Chem. 1994 Feb 4;269(5):3167-74.

PMID:8106350
Abstract

We have investigated the mechanism of the inhibition of membrane-bound NADH dehydrogenase by 1-methyl-4-phenylpyridinium (MPP+) and a series of its 4'-alkyl-substituted analogs of increasing hydrophobicity, as well as their neutral, desmethyl congeners. Comparison of hydrophobicity, as measured by partition coefficients, with the IC50 for the inhibition of NADH oxidase activity in mitochondrial inner membrane preparations shows a negative correlation, but the cationic inhibitors are more effective than the neutral analogs with similar hydrophobicity. The presence of 10 microM tetraphenylboron (TPB-) potentiates the inhibitory power of positively charged analogs up to 4'-pentyl-MPP+, while the neutral inhibitors are unaffected by TPB-. Without TPB-, the more hydrophilic analogs give incomplete inhibition, but the inclusion of TPB- permits the attainment of complete inhibition, accompanied by the appearance of sigmoidal titration curves. These data support the hypothesis that MPP+ analogs, like rotenone, are bound at two sites on the enzyme and occupancy of both is required for complete inhibition. TPB-, by forming ion pairs with the cationic analogs, facilitates their equilibration to both sites in membrane preparations. When present in molar excess over the MPP+ analog, TPB- partially reverses the inhibition by decreasing its concentration in the more hydrophilic binding site. The effect of temperature and of pH on the IC50 values for inhibition support the concept of dual binding sites, and the pH dependence of the inhibition reveals the participation of two ionized protein groups in the binding, one of which may be a thiol group.

摘要

我们研究了1-甲基-4-苯基吡啶鎓(MPP+)及其一系列疏水性递增的4'-烷基取代类似物以及它们的中性去甲基类似物对膜结合NADH脱氢酶的抑制机制。通过分配系数测量的疏水性与线粒体内膜制剂中NADH氧化酶活性抑制的IC50值比较显示出负相关,但阳离子抑制剂比具有相似疏水性的中性类似物更有效。10 microM四苯基硼(TPB-)的存在可增强带正电荷类似物直至4'-戊基-MPP+的抑制能力,而中性抑制剂不受TPB-影响。没有TPB-时,亲水性更强的类似物抑制不完全,但加入TPB-可实现完全抑制,并伴有S形滴定曲线的出现。这些数据支持这样的假设,即MPP+类似物与鱼藤酮一样,在酶的两个位点结合,两个位点都被占据才能完全抑制。TPB-通过与阳离子类似物形成离子对,促进它们在膜制剂中两个位点的平衡。当TPB-以摩尔过量于MPP+类似物存在时,它通过降低MPP+类似物在亲水性更强的结合位点的浓度来部分逆转抑制作用。温度和pH对抑制IC50值的影响支持双结合位点的概念,抑制作用的pH依赖性揭示了两个离子化蛋白质基团参与结合,其中一个可能是巯基。

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