脊椎动物溶质载体家族9B基因和蛋白质(SLC9B)的进化:来自脊椎动物祖先SLC9B2基因的睾丸特异性SLC9B1基因起源于有袋动物的证据。

Roger S Holmes, Kimberly D Spradling-Reeves, Laura A Cox
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引用次数: 8

摘要

SLC9B基因和蛋白是在哺乳动物细胞膜内起溶质交换作用的钠/氢锂反转运蛋白家族的成员。利用多个脊椎动物基因组项目的生物信息学数据,研究了SLC9B2和SLC9B1氨基酸序列和结构以及slc9b样基因的位置。脊椎动物SLC9B2序列与哺乳动物SLC9B1序列具有56-98%的同源性,而同源性为50%。序列比对、关键氨基酸残基和保守预测跨膜结构也进行了研究。哺乳动物SLC9B2和SLC9B1基因通常包含11或12个编码外显子,具有不同的组织表达模式:SLC9B2基因在组织中分布广泛;SLC9B1是睾丸特异性的。鉴定了SLC9B2和SLC9B1基因启动子内的转录因子结合位点和CpG岛。系统发育分析表明,SLC9B1起源于SLC9B2基因复制事件的有袋动物祖先基因组。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Evolution of Vertebrate Solute Carrier Family 9B Genes and Proteins (<i>SLC9B</i>): Evidence for a Marsupial Origin for Testis Specific <i>SLC9B1</i> from an Ancestral Vertebrate <i>SLC9B2</i> Gene.

Evolution of Vertebrate Solute Carrier Family 9B Genes and Proteins (<i>SLC9B</i>): Evidence for a Marsupial Origin for Testis Specific <i>SLC9B1</i> from an Ancestral Vertebrate <i>SLC9B2</i> Gene.

Evolution of Vertebrate Solute Carrier Family 9B Genes and Proteins (SLC9B): Evidence for a Marsupial Origin for Testis Specific SLC9B1 from an Ancestral Vertebrate SLC9B2 Gene.

SLC9B genes and proteins are members of the sodium/lithium hydrogen antiporter family which function as solute exchangers within cellular membranes of mammalian tissues. SLC9B2 and SLC9B1 amino acid sequences and structures and SLC9B-like gene locations were examined using bioinformatic data from several vertebrate genome projects. Vertebrate SLC9B2 sequences shared 56-98% identity as compared with ∼50% identities with mammalian SLC9B1 sequences. Sequence alignments, key amino acid residues and conserved predicted transmembrane structures were also studied. Mammalian SLC9B2 and SLC9B1 genes usually contained 11 or 12 coding exons with differential tissue expression patterns: SLC9B2, broad tissue distribution; and SLC9B1, being testis specific. Transcription factor binding sites and CpG islands within the human SLC9B2 and SLC9B1 gene promoters were identified. Phylogenetic analyses suggested that SLC9B1 originated in an ancestral marsupial genome from a SLC9B2 gene duplication event.

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