首页> 外文期刊>Molecular biology reports >The sterol C-14 reductase encoded by the Neurospora crassa erg-3 gene: essential charged and polar residues identified by site-specific mutagenesis.
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The sterol C-14 reductase encoded by the Neurospora crassa erg-3 gene: essential charged and polar residues identified by site-specific mutagenesis.

机译:Neurospora crassa erg-3基因编码的固醇C-14还原酶:通过位点特异性诱变鉴定必需的带电荷和极性残基。

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摘要

Sterol C-14 reductase catalyses the reduction of the Delta(14,15) bond in intermediates in the sterol biosynthesis pathway using NADPH as a cofactor. We have undertaken a systematic site-directed mutational analysis of all the conserved charged and potentially proton-donating residues of the sterol C-14 reductase from Neurospora crassa. The effect of each mutation was determined using an in vivo assay based on the complementation of the corresponding N. crassa mutant ( erg-3). The non-complementing mutations were also tested in the erg24 mutant of Saccharomyces cervisiae. The results are discussed with reference to the predicted topology of the enzyme and to its proposed catalytic mechanism, which involves addition of a proton from an appropriately positioned charged or polar residue to the substrate double bond, followed by addition of hydride ion from NADPH.
机译:固醇C-14还原酶使用NADPH作为辅因子催化固醇生物合成途径中间产物中Delta(14,15)键的还原。我们对Neurospora crassa的固醇C-14还原酶的所有保守带电和可能提供质子的残基进行了系统的定点突变分析。每个突变的作用是根据相应的猪笼草N. crassa突变体(erg-3)的互补性,通过体内试验确定的。还对酿酒酵母的erg24突变体测试了非互补突变。参考酶的预测拓扑及其提议的催化机制讨论了结果,该机制涉及从适当定位的带电或极性残基向质子双键添加质子,然后从NADPH添加氢离子。

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