Rahier Alain, Pierre Sylvain, Riveill Geneviève, Karst Francis
Institut de Biologie Moléculaire des Plantes, CNRS, UPR2357, 28 rue Goethe, 67083 Strasbourg cedex, France.
Biochem J. 2008 Sep 1;414(2):247-59. doi: 10.1042/BJ20080292.
A putative 8,7SI (sterol 8,7-isomerase) from Zea mays, termed Zm8,7SI, has been isolated from an EST (expressed sequence tag) library and subcloned into the yeast erg2 mutant lacking 8,7SI activity. Zm8,7SI restored endogenous ergosterol synthesis. An in vitro enzymatic assay in the corresponding yeast microsomal extract indicated that the preferred Delta(8)-sterol substrate possesses a single C4alpha methyl group, in contrast with 8,7SIs from animals and fungi, thus reflecting the diversity in the structure of their active site in relation to the distinct sterol biosynthetic pathways. In accordance with the proposed catalytic mechanism, a series of lipophilic ammonium-ion-containing derivatives possessing a variety of structures and biological properties, potently inhibited the Zm8,7SI in vitro. To evaluate the importance of a series of conserved acidic and tryptophan residues which could be involved in the Zm8,7SI catalytic mechanism, 20 mutants of Zm8,7SI were constructed as well as a number of corresponding mutants of the Saccharomyces cerevisiae 8,7SI. The mutated isomerases were assayed in vivo by sterol analysis and quantification of Delta(5,7)-sterols and directly in vitro by examination of the activities of the recombinant Zm8,7SI mutants. These studies have identified His(74), Glu(78), Asp(107), Glu(121), Trp(66) and Trp(193) that are required for Zm8,7SI activity and show that binding of the enzyme-substrate complex is impaired in the mutant T124I. They underline the functional homology between the plant and animal 8,7SIs on one hand, in contrast with the yeast 8,7SI on the other hand, in accordance with their molecular diversity and distinct mechanisms.
从玉米中分离出一种假定的8,7甾醇异构酶(sterol 8,7-isomerase),命名为Zm8,7SI,它是从一个EST(表达序列标签)文库中分离出来的,并亚克隆到缺乏8,7SI活性的酵母erg2突变体中。Zm8,7SI恢复了内源性麦角固醇的合成。在相应的酵母微粒体提取物中进行的体外酶活性测定表明,与动物和真菌的8,7SI不同,其优选的Δ(8)-甾醇底物具有单个C4α甲基,这反映了其活性位点结构与不同甾醇生物合成途径相关的多样性。根据提出的催化机制,一系列具有各种结构和生物学特性的含亲脂性铵离子的衍生物在体外能有效抑制Zm8,7SI。为了评估一系列可能参与Zm8,7SI催化机制的保守酸性和色氨酸残基的重要性,构建了20个Zm8,7SI突变体以及酿酒酵母8,7SI的一些相应突变体。通过甾醇分析和Δ(5,7)-甾醇定量在体内对突变的异构酶进行了测定,并通过检测重组Zm8,7SI突变体的活性在体外直接进行了测定。这些研究确定了Zm8,7SI活性所需的His(74)、Glu(78)、Asp(107)、Glu(121)、Trp(66)和Trp(193),并表明突变体T124I中酶-底物复合物的结合受到损害。这些研究一方面强调了植物和动物8,7SI之间的功能同源性,另一方面与酵母8,SI形成对比,这与它们的分子多样性和不同机制相一致。