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A Novel Sterol Desaturase-Like Protein Promoting Dealkylation of Phytosterols in Tetrahymena thermophila

机译:一种新型甾醇去饱和酶样蛋白可促进嗜热四膜虫中植物甾醇的脱烷基化

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摘要

The gene TTHERM_00438800 (DES24) from the ciliate Tetrahymena thermophila encodes a protein with three conserved histidine clusters, typical of the fatty acid hydroxylase superfamily. Despite its high similarity to sterol desaturase-like enzymes, the phylogenetic analysis groups Des24p in a separate cluster more related to bacterial than to eukaryotic proteins, suggesting a possible horizontal gene transfer event. A somatic knockout of DES24 revealed that the gene encodes a protein, Des24p, which is involved in the dealkylation of phytosterols. Knocked-out mutants were unable to eliminate the C-24 ethyl group from C29 sterols, whereas the ability to introduce other modifications, such as desaturations at positions C-5(6), C-7(8), and C-22(23), were not altered. Although C-24 dealkylations have been described in other organisms, such as insects, neither the enzymes nor the corresponding genes have been identified to date. Therefore, this is the first identification of a gene involved in sterol dealkylation. Moreover, the knockout mutant and wild-type strain differed significantly in growth and morphology only when cultivated with C29 sterols; under this culture condition, a change from the typical pear-like shape to a round shape and an alteration in the regulation of tetrahymanol biosynthesis were observed. Sterol analysis upon culture with various substrates and inhibitors indicate that the removal of the C-24 ethyl group in Tetrahymena may proceed by a mechanism different from the one currently known.
机译:来自嗜热纤毛四膜虫的基因TTHERM_00438800(DES24)编码具有三个保守组氨酸簇的蛋白质,这是脂肪酸羟化酶超家族的典型特征。尽管它与固醇去饱和酶样酶高度相似,但系统发育分析将Des24p分组在一个与细菌比与真核蛋白更相关的单独簇中,表明可能存在水平基因转移事件。 DES24的体细胞敲除表明该基因编码蛋白Des24p,该蛋白与植物甾醇的脱烷基化有关。敲除的突变体无法从C29固醇中消除C-24乙基,而能够引入其他修饰,例如在C-5(6),C-7(8)和C-22( 23),未更改。尽管已经在其他生物如昆虫中描述了C-24脱烷基,但迄今为止尚未鉴定出酶或相应的基因。因此,这是与固醇脱烷基化有关的基因的首次鉴定。此外,仅用C29固醇培养时,敲除突变体和野生型菌株的生长和形态差异显着。在这种培养条件下,观察到了从典型的梨状到圆形的变化以及四氢香豆酚生物合成的调节的变化。用各种底物和抑制剂培养时的甾醇分析表明,四膜虫中C-24乙基的去除可能通过不同于目前已知的机理进行。

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