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首页> 外文期刊>Frontiers in Plant Science >Site-Directed Mutagenesis from Arg195 to His of a Microalgal Putatively Chloroplastidial Glycerol-3-Phosphate Acyltransferase Causes an Increase in Phospholipid Levels in Yeast
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Site-Directed Mutagenesis from Arg195 to His of a Microalgal Putatively Chloroplastidial Glycerol-3-Phosphate Acyltransferase Causes an Increase in Phospholipid Levels in Yeast

机译:来自arg195的氨基型诱变到他微藻甲状腺糖苷糖醇-3-磷酸酰酰基转移酶的诱变导致酵母中磷脂水平的增加

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To analyze the contribution of glycerol-3-phosphate acyltransferase (GPAT) to the first acylation of glycerol-3-phosphate (G-3-P), the present study focused on a functional analysis of the GPAT gene from Lobosphaera incisa (designated as LiGPAT ). A full-length cDNA of LiGPAT consisting of a 1,305-bp ORF, a 1,652-bp 5′-UTR, and a 354-bp 3′-UTR, was cloned. The ORF encoded a 434-amino acid peptide, of which 63 residues at the N-terminus defined a chloroplast transit peptide. Multiple sequence alignment and phylogeny analysis of GPAT homologs provided the convincible bioinformatics evidence that LiGPAT was localized to chloroplasts. Considering the conservation of His among the G-3-P binding sites from chloroplastidial GPATs and the substitution of His by Arg at position 195 in the LiGPAT mature protein (designated mLiGPAT), we established the heterologous expression of either mLiGPAT or its mutant (Arg195His) ( sdmLiGPAT ) in the GPAT-deficient yeast mutant gat1 Δ. Lipid profile analyses of these transgenic yeasts not only validated the acylation function of LiGPAT but also indicated that the site-directed mutagenesis from Arg~(195)to His led to an increase in the phospholipid level in yeast. Semi-quantitative analysis of mLiGPAT and sdmLiGPAT, together with the structural superimposition of their G-3-P binding sites, indicated that the increased enzymatic activity was caused by the enlarged accessible surface of the phosphate group binding pocket when Arg~(195)was mutated to His. Thus, the potential of genetic manipulation of GPAT to increase the glycerolipid level in L . incisa and other microalgae would be of great interest.
机译:为了分析甘油-3-磷酸酰酰基转移酶(GPAT)至甘油-3-磷酸盐(G-3-P)的第一酰化的贡献,本研究重点是来自Lobosphaera Incisa的GPAT基因的功能分析(指定为Ligpat)。克隆了由1,305-BP ORF,1,652-BP 5'-UTR和354-BP 3'--UTR组成的Ligpat的全长cDNA。 ORF编码了434-氨基酸肽,其中N-末端的63个残基定义了叶绿体过渡肽。 GPAT同源物的多序列对准和系统发育分析提供了令人令人信心的生物信息学证据,即Ligpat局部化为叶绿体。考虑到他在叶绿体GPAT中的G-3-P-P结合位点的守恒和通过ARG在Ligpat成熟蛋白(指定的微粒)中的ARG的取代,我们建立了微蛋白或其突变体的异源表达(Arg195His )(SDMLIGPAT)在GPAT缺陷型酵母突变体GAT1δ中。这些转基因酵母的脂质谱分析不仅验证了Ligpat的酰化功能,而且表明,来自arg〜(195)的现场定向诱变为他的导致酵母磷脂水平的增加。 MLIGPAT和SDMLIGPAT的半定量分析以及其G-3-P-P结合位点的结构叠加,表明酶活性增加是由磷酸盐组结合口袋的扩大可接近表面引起的,当ARG〜(195)是变得他的。因此,GPAT的遗传操作潜力增加了L中的甘油脂脂肪脂肪脂。 Incisa和其他微藻会非常兴趣。

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