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N,N'-二环己基碳二亚胺和N-(乙氧羰基)-2-乙氧基-1,2-二氢喹啉对线粒体烟酰胺核苷酸转氢酶的氢离子转移和质子转运活性的影响

Effects of N,N'-dicyclohexylcarbodiimide and N-(ethoxycarbonyl)-2-ethoxy-1,2-dihydroquinoline on hydride ion transfer and proton translocation activities of mitochondrial nicotinamidenucleotide transhydrogenase.

作者信息

Phelps D C, Hatefi Y

出版信息

Biochemistry. 1984 Dec 18;23(26):6340-4. doi: 10.1021/bi00321a008.

Abstract

N,N'-Dicyclohexylcarbodiimide (DCCD) inhibits the mitochondrial energy-linked nicotinamidenucleotide transhydrogenase (TH). Our studies [Phelps, D.C., & Hatefi, Y. (1981) J. Biol. Chem. 256, 8217-8221; Phelps, D.C., & Hatefi, Y. (1984) Biochemistry 23, 4475-4480] suggested that the inhibition site of DCCD is near the NAD(H) binding site, because NAD(H) and competitive inhibitors protected TH against inhibition by DCCD and, unlike the unmodified TH, the DCCD-modified TH did not bind to NAD-agarose. Others [Pennington, R.M., & Fisher, R.R. (1981) J. Biol. Chem. 256, 8963-8969] could not demonstrate protection by NADH, obtained data indicating DCCD inhibits proton translocation by TH much more than hydride ion transfer from NADPH to 3-acetylpyridine adenine dinucleotide (AcPyAD), and concluded that DCCD modifies an essential residue in the proton channel of TH. The present studies show that N-(ethoxycarbonyl)-2-ethoxy-1,2-dihydroquinoline (EEDQ) also inhibits TH. The inhibition is pseudo first order at several EEDQ concentrations, and the reaction order with respect to [EEDQ] is unity, suggesting that inhibition involves the interaction of one molecule of EEDQ with one active unit of TH. The EEDQ-modified TH reacts covalently with [3H]aniline, suggesting that the residue modified by EEDQ is a carboxyl group. More significantly, it has been shown that the absorbance change of oxonol VI at 630 minus 603 nm is a reliable reporter of TH-induced membrane potential formation in submitochondrial particles and that TH-catalyzed hydride ion transfer from NADPH to AcPyAD and the membrane potential induced by this reaction are inhibited in parallel by either DCCD or EEDQ.

摘要

N,N'-二环己基碳二亚胺(DCCD)可抑制线粒体能量偶联的烟酰胺核苷酸转氢酶(TH)。我们的研究[费尔普斯,D.C.,& 哈泰菲,Y.(1981年)《生物化学杂志》256卷,8217 - 8221页;费尔普斯,D.C.,& 哈泰菲,Y.(1984年)《生物化学》23卷,4475 - 4480页]表明,DCCD的抑制位点靠近NAD(H)结合位点,因为NAD(H)和竞争性抑制剂可保护TH免受DCCD的抑制,并且与未修饰的TH不同,DCCD修饰的TH不与NAD - 琼脂糖结合。其他人[彭宁顿,R.M.,& 费舍尔,R.R.(1981年)《生物化学杂志》256卷,8963 - 8969页]无法证明NADH具有保护作用,所获得的数据表明DCCD对TH质子转运的抑制作用远大于从NADPH到3 - 乙酰吡啶腺嘌呤二核苷酸(AcPyAD)的氢离子转移,并得出结论,DCCD修饰了TH质子通道中的一个必需残基。目前的研究表明,N - (乙氧羰基) - 2 - 乙氧基 - 1,2 - 二氢喹啉(EEDQ)也可抑制TH。在几种EEDQ浓度下,抑制作用为假一级反应,且相对于[EEDQ]的反应级数为1,这表明抑制作用涉及一分子EEDQ与一个TH活性单位的相互作用。EEDQ修饰的TH与[³H]苯胺发生共价反应,表明被EEDQ修饰的残基是一个羧基。更重要的是,已表明氧杂萘酚VI在630减去603纳米处的吸光度变化是亚线粒体颗粒中TH诱导的膜电位形成的可靠报告指标,并且由DCCD或EEDQ均可同时抑制TH催化的从NADPH到AcPyAD的氢离子转移以及该反应诱导的膜电位。

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