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首页> 外文期刊>Acta crystallographica, Section F. Structural biology and crystallization communications >Crystallization and preliminary X-ray crystallographic analysis of MxaJ, a component of the methanol-oxidizing system operon from the marine bacterium Methylophaga aminisulfidivorans MPT
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Crystallization and preliminary X-ray crystallographic analysis of MxaJ, a component of the methanol-oxidizing system operon from the marine bacterium Methylophaga aminisulfidivorans MPT

机译:MxaJ的结晶和初步X射线晶体学分析,MxaJ是海洋细菌Methylophaga aminisulfidivorans MPT的甲醇氧化系统操纵子的组成部分

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摘要

The methanol-oxidizing system (mox) is essential for methylotrophic bacteria to extract energy during the oxidoreduction reaction and consists of a series of electron-transfer proteins encoded by the mox operon. One of the key enzymes is the alpha(2)beta(2) methanol dehydrogenase complex (type I MDH), which converts methanol to formaldehyde during the 2e(-) transfer through the prosthetic group pyrroloquinoline quinone. MxaJ, a product of mxaJ of the mox operon, is a component of the MDH complex and enhances the methanol-converting activity of the MDH complex. However, the exact functional mechanism of MxaJ in the complex is not clearly known. To investigate the functional role of MxaJ in MDH activity, an attempt was made to determine its crystal structure. Diffraction data were collected from a selenomethionine-substituted crystal to 1.92 angstrom resolution at the peak wavelength. The crystal belonged to the orthorhombic space group P2(1)2(1)2(1), with unit-cell parameters a = 37.127, b = 63.761, c = 99.246 angstrom. The asymmetric unit contained one MxaJ molecule with a calculated Matthews coefficient of 2.11 angstrom(3) Da(-1) and a solvent content of 41.7%. Three-dimensional structure determination of the MxaJ protein is currently in progress by the single-wavelength anomalous dispersion technique and model building.
机译:甲醇氧化系统(mox)对于甲基营养细菌在氧化还原反应中提取能量至关重要,它由一系列由mox操纵子编码的电子转移蛋白组成。关键酶之一是alpha(2)beta(2)甲醇脱氢酶复合物(I型MDH),它在通过义肢基吡咯并喹啉醌的2e(-)转移过程中将甲醇转化为甲醛。 Mox操纵子的mxaJ的产物MxaJ是MDH配合物的组成部分,可增强MDH配合物的甲醇转化活性。但是,不清楚该复合物中MxaJ的确切功能机制。为了研究MxaJ在MDH活性中的功能作用,尝试确定其晶体结构。从硒甲硫氨酸取代的晶体在峰值波长处以1.92埃的分辨率收集衍射数据。晶体属于正交晶体空间群P2(1)2(1)2(1),单位晶胞参数a = 37.127,b = 63.761,c = 99.246埃。不对称单元包含一个MxaJ分子,其马修斯系数为2.11埃(3)Da(-1),溶剂含量为41.7%。目前正在通过单波长异常色散技术和模型构建来确定MxaJ蛋白的三维结构。

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