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弗氏志贺菌和鼠伤寒沙门氏菌中钒酸盐取代的酸性磷酸酶的溴过氧化物酶活性。

Bromoperoxidase activity of vanadate-substituted acid phosphatases from Shigella flexneri and Salmonella enterica ser. typhimurium.

作者信息

Tanaka Naoko, Dumay Valérie, Liao Qianning, Lange Alex J, Wever Ron

机构信息

Institute for Molecular Chemistry, University of Amsterdam, The Netherlands.

出版信息

Eur J Biochem. 2002 Apr;269(8):2162-7. doi: 10.1046/j.1432-1033.2002.02871.x.

Abstract

Vanadium haloperoxidases and the bacterial class A nonspecific acid phosphatases have a conserved active site. It is shown that vanadate-substituted recombinant acid phosphatase from Shigella flexneri (PhoN-Sf) and Salmonella enterica ser. typhimurium (PhoN-Se) in the presence of H2O2 are able to oxidize bromide to hypobromous acid. Vanadate is essential for this activity. The kinetic parameters for the artificial bromoperoxidases have been determined. The Km value for H2O2 is about the same as that for the vanadium bromoperoxidases from the seaweed Ascophyllum nodosum. However, the Km value for Br- is about 10-20 times higher, and the turnover values of about 3.4 min-1 and 33 min-1 for PhoN-Sf and PhoN-Se, respectively, are much slower, than those of the native bromoperoxidase. Thus, despite the striking similarity in the active-site structures of the vanadium haloperoxidases and the acid phosphatase, the turnover frequency is low, and clearly the active site of acid phosphatases is not optimized for haloperoxidase activity. Like the native vanadium bromoperoxidase, the vanadate-substituted PhoN-Sf and PhoN-Se catalyse the enantioselective sulfoxidation of thioanisole.

摘要

钒卤过氧化物酶和细菌A类非特异性酸性磷酸酶具有保守的活性位点。研究表明,在过氧化氢存在下,来自福氏志贺菌(PhoN-Sf)和鼠伤寒沙门氏菌(PhoN-Se)的钒酸盐取代的重组酸性磷酸酶能够将溴化物氧化为次溴酸。钒酸盐对于该活性至关重要。已确定了人工溴过氧化物酶的动力学参数。过氧化氢的Km值与来自墨角藻的钒溴过氧化物酶的Km值大致相同。然而,溴离子的Km值约高10 - 20倍,并且PhoN-Sf和PhoN-Se的周转值分别约为3.4 min-1和33 min-1,比天然溴过氧化物酶的周转值慢得多。因此,尽管钒卤过氧化物酶和酸性磷酸酶的活性位点结构惊人地相似,但周转频率较低,显然酸性磷酸酶的活性位点并非针对卤过氧化物酶活性进行了优化。与天然钒溴过氧化物酶一样,钒酸盐取代的PhoN-Sf和PhoN-Se催化硫代苯甲醚的对映选择性硫氧化反应。

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