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通过特异性有限蛋白酶解研究老黄色酶的结构

On the structure of old yellow enzyme studied by specific limited proteolysis.

作者信息

Miura R, Yamaichi K, Tagawa K, Miyake Y

机构信息

Department of Biochemistry, National Cardiovascular Center Research Institute, Osaka.

出版信息

J Biochem. 1987 Nov;102(5):1311-20. doi: 10.1093/oxfordjournals.jbchem.a122169.

Abstract

Limited proteolysis of brewer's yeast old yellow enzyme (OYE) was carried out with bovine pancreatic alpha-chymotrypsin. The reaction proceeded with a decrease of the NADPH oxidase activity, generating specifically two peptides (designated as 34K and 14K fragments) with apparent molecular weights of 34,000 and 14,000, respectively. The same proteolytic treatment of apo OYE resulted in rapid and complete digestion of the protein. The 34K and 14K fragments are so intimately associated with each other that the isolation of each peptide from the other in the native form was unsuccessful. However, the complex of the two fragments was separated from the intact OYE and termed "nicked OYE." Nicked OYE still retained FMN and showed a visible-absorption spectrum slightly modified from that of intact OYE. Nicked OYE showed decreased affinity toward rho-bromophenol as compared to intact OYE. Nicked OYE exhibited lower Km and Vmax values than intact OYE in the NADPH oxidase reaction. The 34K and 14K fragments could be separated from each other by reversed-phase HPLC under denaturing conditions and the amino acid sequences of the two fragments and intact OYE in the amino terminal regions were determined. The N-terminal sequence of the 34K fragment coincided with that of intact OYE, indicating that the 34K fragment lies in the N-terminal side of OYE. The N-terminal sequence of the 14K fragment was found to show homology with the site of flavodoxin where it forms an electron-transfer complex with cytochrome c. The characteristic feature of this region is the presence of acidic residues and is shared by the FMN domain of NADPH-cytochrome P-450 reductase. We interpret these findings as indicating that OYE has a physiological role as an electron transfer component.

摘要

用牛胰α-胰凝乳蛋白酶对啤酒酵母老黄色酶(OYE)进行有限度的蛋白水解。随着NADPH氧化酶活性的降低,反应得以进行,特异性地产生了两条肽段(分别命名为34K和14K片段),其表观分子量分别为34,000和14,000。对脱辅基OYE进行相同的蛋白水解处理导致该蛋白迅速且完全被消化。34K和14K片段彼此紧密相连,以至于无法以天然形式将它们彼此分离。然而,这两个片段的复合物与完整的OYE分离,并被称为“切口OYE”。切口OYE仍保留FMN,其可见吸收光谱与完整OYE的光谱略有不同。与完整OYE相比,切口OYE对ρ-溴苯酚的亲和力降低。在NADPH氧化酶反应中,切口OYE的Km和Vmax值低于完整OYE。在变性条件下,34K和14K片段可通过反相高效液相色谱法彼此分离,并测定了这两个片段以及完整OYE氨基末端区域的氨基酸序列。34K片段的N端序列与完整OYE的N端序列一致,表明34K片段位于OYE的N端一侧。发现14K片段的N端序列与黄素氧还蛋白与细胞色素c形成电子转移复合物的位点具有同源性。该区域的特征是存在酸性残基,并且NADPH-细胞色素P-450还原酶的FMN结构域也具有此特征。我们将这些发现解释为表明OYE作为电子传递成分具有生理作用。

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