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Primary structure of xylene monooxygenase: similarities to and differences from the alkane hydroxylation system.

机译:二甲苯单加氧酶的一级结构:与烷烃羟基化系统的相似之处和不同之处。

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摘要

Xylene monooxygenase, encoded by the TOL plasmid of Pseudomonas putida, catalyzes the oxidation of toluene and xylenes and consists of two different subunits encoded by xylA and xylM. In this study, the complete nucleotide sequences of these genes were determined and the amino acid sequences of the xylA and xylM products were deduced. The XylM sequence had a 25% homology with alkane hydroxylase, which catalyzes the omega-hydroxylation of fatty acids and the terminal hydroxylation of alkanes. The sequence of the first 90 amino acids of XylA exhibited a strong similarity to the sequence of chloroplast-type ferredoxins, whereas the rest of the XylA sequence resembled that of ferredoxin-NADP+ reductases. Based on this information, the structure and function of xylene monooxygenase were deduced. XylM may be a catalytic component for the hydroxylation of the carbon side chain of toluene and xylenes and, as is the alkane hydroxylase protein, may be a membrane-bound protein containing ferrous ion as a prosthetic group. XylA may have two domains consisting of an N-terminal region similar to chloroplast-type ferredoxins and a C-terminal region similar to ferredoxin-NADP+ reductases. The ferredoxin portion of XylA may contain a [2Fe-2S] cluster and reduce the oxidized form of the XylM hydroxylase. The activity determined by the C-terminal region of the XylA sequence may be the reduction of the oxidized form of ferredoxin by concomitant oxidation of NADH.
机译:由恶臭假单胞菌(Pseudomonas putida)的TOL质粒编码的二甲苯单加氧酶催化甲苯和二甲苯的氧化,并由xylA和xylM编码的两个不同的亚基组成。在这项研究中,确定了这些基因的完整核苷酸序列,并推导了xylA和xylM产物的氨基酸序列。 XylM序列与烷烃羟化酶具有25%的同源性,其催化脂肪酸的ω-羟基化和烷烃的末端羟基化。 XylA的前90个氨基酸的序列与叶绿体型铁氧还蛋白的序列具有很强的相似性,而其余的XylA序列与铁氧还蛋白-NADP +还原酶相似。根据这些信息,推导了二甲苯单加氧酶的结构和功能。 XylM可以是用于甲苯和二甲苯的碳侧链的羟基化的催化组分,并且如同烷烃羟化酶蛋白一样,XylM可以是包含亚铁离子作为辅基的膜结合蛋白。 XylA可具有两个结构域,其由类似于叶绿体型铁氧还蛋白的N-末端区域和类似于铁氧还蛋白-NADP +还原酶的C-末端区域组成。 XylA的铁氧还蛋白部分可包含[2Fe-2S]簇,并还原XylM羟化酶的氧化形式。由XylA序列的C-末端区域确定的活性可以是通过NADH的同时氧化来还原铁氧还蛋白的氧化形式。

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