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铜绿假单胞菌细胞色素c过氧化物酶的激活。血红素连接蛋白环的作用:一项诱变研究。

Activation of the cytochrome c peroxidase of Pseudomonas aeruginosa. The role of a heme-linked protein loop: a mutagenesis study.

作者信息

Hsiao Hsi-Chen, Boycheva Svetlana, Watmough Nicholas J, Brittain Thomas

机构信息

Centre for Metalloprotein Spectroscopy and Biology, School of Biological Sciences, University of Auckland, Auckland, New Zealand.

出版信息

J Inorg Biochem. 2007 Aug;101(8):1133-9. doi: 10.1016/j.jinorgbio.2007.04.012. Epub 2007 May 8.

Abstract

Mutagenesis studies have been used to investigate the role of a heme ligand containing protein loop (67-79) in the activation of di-heme peroxidases. Two mutant forms of the cytochrome c peroxidase of Pseudomonas aeruginosa have been produced. One mutant (loop mutant) is devoid of the protein loop and the other (H71G) contains a non-ligating Gly at the normal histidine ligand site. Spectroscopic data show that in both mutants the distal histidine ligand of the peroxidatic heme in the un-activated enzyme is lost or is exchangeable. The un-activated H71G and loop mutants show, respectively, 75% and 10% of turnover activity of the wild-type enzyme in the activated form, in the presence of hydrogen peroxide and the physiological electron donor cytochrome c(551). Both mutant proteins show the presence of constitutive reactivity with peroxide in the normally inactive, fully oxidised, form of the enzyme and produce a radical intermediate. The radical product of the constitutive peroxide reaction appears to be located at different sites in the two mutant proteins. These results show that the loss of the histidine ligand from the peroxidatic heme is, in itself, sufficient to produce peroxidatic activity by providing a peroxide binding site and that the formation of radical intermediates is very sensitive to changes in protein structure. Overall, these data are consistent with a major role for the protein loop 67-79 in the activation of di-heme peroxidases and suggest a "charge hopping" mechanism may be operative in the process of intra-molecular electron transfer.

摘要

诱变研究已被用于探究含血红素配体的蛋白质环(67 - 79)在双血红素过氧化物酶激活过程中的作用。已制备出铜绿假单胞菌细胞色素c过氧化物酶的两种突变形式。一种突变体(环突变体)缺失该蛋白质环,另一种(H71G)在正常组氨酸配体位点含有一个非配位的甘氨酸。光谱数据表明,在两种突变体中,未激活的酶中过氧化物血红素的远端组氨酸配体丢失或可交换。在过氧化氢和生理电子供体细胞色素c(551)存在的情况下,未激活的H71G和环突变体分别显示出野生型酶激活形式75%和10%的周转活性。两种突变蛋白在酶通常无活性、完全氧化的形式下均显示出与过氧化物的组成型反应性,并产生一种自由基中间体。组成型过氧化物反应的自由基产物似乎位于两种突变蛋白的不同位点。这些结果表明,过氧化物血红素中组氨酸配体的丢失本身足以通过提供一个过氧化物结合位点产生过氧化物酶活性,并且自由基中间体的形成对蛋白质结构的变化非常敏感。总体而言,这些数据与蛋白质环67 - 79在双血红素过氧化物酶激活中的主要作用一致,并表明“电荷跳跃”机制可能在分子内电子转移过程中起作用。

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