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关于梭菌磷酸转乙酰酶催化反应中不存在酰基酶中间体的证据。

Evidence against an acyl-enzyme intermediate in the reaction catalyzed by clostridial phosphotransacetylase.

作者信息

Henkin J, Abeles R H

出版信息

Biochemistry. 1976 Aug 10;15(16):3472-9. doi: 10.1021/bi00661a012.

Abstract

Clostridial phosphotransacetylase catalyzes acyl group transfer between coenzyme A (CoA) and inorganic phosphate and also the arsenolysis of acetyl-coenzyme A (AcCoA) to yield acetate and CoA-SH. The enzyme mobility on sodium dodecyl sulfate electrophoresis corresponds to a molecular weight of 70 000. Kinetics of both forward and reverse reactions are of the ternary type as previously reported and product inhibition data are consistent with a random binding scheme. One essential sulfhydryl group per 70 000 daltons was inactivated in a pseudo-first-order process by either N-ethylmaleimide or 5,5'-dithiobis (nitrobenzoic acid). Reduction of the rate of this inactivation by 50% in the presence of AcCoA or acetyl phosphate concentrations near their kinetic K values demonstrates binding of these acyl donors in simple enzyme-substrate complexes. Moreover, pulse-chase experiments show these binary complexes to be functional and also show that they do not dissociate rapidly compared with their rates of catalytic turnover. Incubation of the enzyme with 14C-labeled acyl donors failed to produce labeled protein after passage through Sephadex. This was true despite efforts to mimic "substrate synergism" with desulfo-CoA or to compensate for unfavorable equilibria by means of CoA traps. Very slow isotope exchange reactions of 32Pi into acetyl phosphate and [3H]CoA into AcCoA were at first observed. As in the cases of several other enzymes recently reexamined, these were shown on careful inspection to be artifacts of contamination by second substrates. Attempts to detect exchange reactions between acetyl phosphate and Pi, even in the presence of the CoA analogue, desulfo-CoA, were also unsuccessful. Therefore, no evidence for an acyl-enzyme could be detected. Furthermore, our data allow us to develop arguments which, we believe, indicate that an acyl-enzyme intermediate is extremely improbable in the reaction catalyzed by phosphotransacetylase.

摘要

梭菌磷酸转乙酰酶催化辅酶A(CoA)与无机磷酸之间的酰基转移,还催化乙酰辅酶A(AcCoA)的砷解反应,生成乙酸盐和CoA-SH。该酶在十二烷基硫酸钠电泳中的迁移率对应于70000的分子量。如先前报道,正向和反向反应的动力学均为三元类型,产物抑制数据与随机结合模式一致。每70000道尔顿有一个必需的巯基,可通过N-乙基马来酰亚胺或5,5'-二硫代双(硝基苯甲酸)以假一级反应过程失活。在AcCoA或乙酰磷酸浓度接近其动力学K值时,将该失活速率降低50%,表明这些酰基供体在简单的酶-底物复合物中结合。此外,脉冲追踪实验表明这些二元复合物具有功能,并且与它们的催化周转速率相比,它们不会快速解离。用14C标记的酰基供体孵育该酶,经葡聚糖凝胶过滤后未能产生标记蛋白。尽管努力用脱硫CoA模拟“底物协同作用”或通过CoA陷阱补偿不利的平衡,但情况依然如此。最初观察到32Pi与乙酰磷酸以及[3H]CoA与AcCoA之间非常缓慢的同位素交换反应。与最近重新研究的其他几种酶的情况一样,仔细检查发现这些是被第二种底物污染的假象。即使在存在CoA类似物脱硫CoA的情况下,尝试检测乙酰磷酸和Pi之间的交换反应也未成功。因此,未检测到酰基酶的证据。此外,我们的数据使我们能够提出论据,我们认为这些论据表明在磷酸转乙酰酶催化的反应中,酰基酶中间体极不可能存在。

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