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Vertebrate patatin-like phospholipase domain-containing protein 4 (PNPLA4) genes and proteins: a gene with a role in retinol metabolism

机译:脊椎动物patatin样磷脂酶域蛋白4(PNPLA4)基因和蛋白质:一个在视黄醇代谢中起作用的基因

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摘要

At least eight families of mammalian patatin-like phospholipase domain-containing proteins (PNPLA) (E.C. 3.1.1.3) catalyse the hydrolysis of triglycerides, including PNPLA4 (alternatively PLPL4 or GS2), which also acts as a retinol transacylase and participates in retinol-ester metabolism in the body. Bioinformatic methods were used to predict the amino acid sequences, secondary and tertiary structures and gene locations for PNPLA4 genes and encoded proteins using data from several vertebrate genome projects. PNPLA4 genes were located on the X-chromosome for the eutherian mammalian genomes examined. Opossum (marsupial), chicken, anole lizard, clawed toad, zebrafish and lancelet PNPLA4 genes were also identified. Most vertebrate PNPLA4 genes typically contained six coding exons whereas the lancelet PNPLA4 gene contained five coding exons. PNPLA4 subunits were the smallest among the PNPLA-like proteins examined containing 252–255 residues, shared >64 % sequence identities and key amino acid residues and predicted motifs, including ‘patatin’ (residues 6–176); putative catalytic dyad active site residues, Ser43 and Asp163; oxy-anion ‘hole’ residues (10–15); and conserved serine residues, which may perform structural roles for this enzyme. Predicted tertiary structures for PNPLA4 ‘patatin’ were similar to those reported for potato ‘patatin’, suggesting that it is strongly conserved during evolution. Human PNPLA4 contained a CpG49 island within the gene promoter, a miRNA-186 binding site within the mRNA 3′-noncoding region for the PNPLA4b isoform and exhibited wide tissue expression at a higher than average level. These and previous studies of vertebrate PNPLA-like gene families have suggested that PNPLA4 is an ancient gene in evolution which has resulted from a duplication of an ancestral invertebrate ATGL-like gene (encoding adipose triglyceride lipase).Electronic supplementary materialThe online version of this article (doi:10.1007/s13205-012-0063-7) contains supplementary material, which is available to authorized users.
机译:至少八个家族的含哺乳动物patatin样磷脂酶结构域的蛋白(PNPLA)(EC 3.1.1.3)催化甘油三酸酯的水解,包括PNPLA4(或者PLPL4或GS2),甘油三酸酯也起视黄醇转酰酶的作用,并参与视黄醇-体内的酯代谢。利用来自几个脊椎动物基因组计划的数据,使用生物信息学方法来预测PNPLA4基因和编码蛋白的氨基酸序列,二级和三级结构以及基因位置。 PNPLA4基因位于X染色体上,用于检查的真核哺乳动物基因组。还鉴定了负鼠(有袋动物),鸡,Anole蜥蜴,爪蟾蜍,斑马鱼和柳叶刀PNPLA4基因。大多数脊椎动物PNPLA4基因通常包含六个编码外显子,而柳叶刀PNPLA4基因包含五个编码外显子。在检测的PNPLA样蛋白中,PNPLA4亚基最小,包含252–255个残基,共有> 64%的序列同一性和关键氨基酸残基,并包含'patatin'(包括残基6–176)等预测基序。推定的催化二聚体活性位点残基,Ser43和Asp163;氧阴离子“孔”残基(10-15);保守的丝氨酸残基,可能对该酶发挥结构作用。 PNPLA4“ patatin”的预测三级结构与报道的马铃薯“ patatin”的三级结构相似,表明在进化过程中它是高度保守的。人PNPLA4在基因启动子中包含一个CpG49岛,在PNPLA4b亚型的mRNA 3'-非编码区中包含一个miRNA-186结合位点,并以高于平均水平的水平显示了广泛的组织表达。脊椎动物PNPLA样基因家族的这些和以前的研究表明,PNPLA4是进化中的古老基因,它是由祖先无脊椎动物ATGL样基因(编码脂肪甘油三酸酯脂肪酶)的重复产生的。电子补充材料(doi:10.1007 / s13205-012-0063-7)包含补充材料,授权用户可以使用。

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