首页> 外文期刊>Inorganica Chimica Acta >Roles of valine-98 and glutamic acid-72 of putidaredoxin in the electron-transfer complexes with NADH-putidaredoxin reductase and P450cam
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Roles of valine-98 and glutamic acid-72 of putidaredoxin in the electron-transfer complexes with NADH-putidaredoxin reductase and P450cam

机译:哒氧还蛋白的缬氨酸-98和谷氨酸-72在NADH-putidaredoxin还原酶和P450cam的电子转移复合物中的作用

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In the P450cam reaction cycle, the interactions between putidaredoxin (Pdx) and P450cam or NADH-putidaredoxin reductase (PdR) have been considered to be essential in the electron-transfer process. In this study, three mutant putidaredoxins were prepared to examine the hydrophobic and electrostatic interactions in the reaction complexes. Val-98, which is exposed to solvent and has been previously suggested to play a key role in hydrophobic interactions, was substituted by alanine (V98A) or threonine (V98T) to perturb the hydrophobicity at the 98 position. Another mutation site was Glu-72 which is located in the middle of the negative charge-rich region. This glutamate was altered to glutamine (E72Q) to neutralize one of the negative charges on the surface of Pdx. The electronic absorption and H-1 NMR spectra of oxidized and reduced forms of these mutants, and their redox potentials were similar to those of wild type Pdx, indicating that the environment of the Fe-2-S-2 cluster was not very seriously affected by these mutations. In cytochrome c reduction activity, however, the ionic strength dependence of E72Q mutant differs slightly from that of the wild type protein. The mutation at glutamine at the 72 position weakened the association to PAR, indicating that Glu-72 is one of the amino acid residues contributing to form the reaction complex for the electron-transfer between Pdx and PdR. Based on the NADH consumption activity of these mutants, the hydrophobic interactions at Val-98 are involved in binding to P450cam, while electrostatic interactions at Glu-72 are rather small to affect the reaction between Pdx and P450cam. These different effects of the mutations suggest that the interaction sites to P450cam on Pdx are not completely superimposed on that to PUR. (C) 1998 Elsevier Science S.A. All rights reserved. [References: 51]
机译:在P450cam反应周期中,已将Putredredoxin(Pdx)与P450cam或NADH-putidaredoxin还原酶(PdR)之间的相互作用视为电子转移过程中必不可少的。在这项研究中,准备了三种突变体恶臭氧化还原蛋白,以检查反应复合物中的疏水和静电相互作用。 Val-98暴露于溶剂中,以前被认为在疏水相互作用中起关键作用,被丙氨酸(V98A)或苏氨酸(V98T)取代以扰乱98位的疏水性。另一个突变位点是Glu-72,位于负电荷富集区域的中间。将该谷氨酸改变为谷氨酰胺(E72Q)以中和Pdx表面上的负电荷之一。这些突变体的氧化和还原形式的电子吸收和H-1 NMR谱图以及它们的氧化还原电位与野生型Pdx相似,表明Fe-2-S-2团簇的环境并未受到严重影响通过这些突变。但是,在细胞色素c还原活性方面,E72Q突变体的离子强度依赖性与野生型蛋白略有不同。在72位谷氨酰胺处的突变减弱了与PAR的缔合,表明Glu-72是有助于形成用于Pdx和PdR之间电子转移的反应复合物的氨基酸残基之一。基于这些突变体的NADH消耗活性,Val-98处的疏水相互作用参与与P450cam的结合,而Glu-72处的静电相互作用则很小,以影响Pdx和P450cam之间的反应。突变的这些不同影响表明,Pdx上与P450cam的相互作用位点未与PUR上的相互作用位点完全重叠。 (C)1998 Elsevier Science S.A.保留所有权利。 [参考:51]

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