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马的M(1)和M(2)型丙酮酸激酶基因的分子特征与表达

Molecular characterization and expression of the equine M(1) and M(2)-pyruvate kinase gene.

作者信息

Echigoya Yusuke, Sato Tetsuo, Itou Takuya, Endo Hideki, Sakai Takeo

机构信息

Nihon University Veterinary Research Center, 1866 Kameino, Fujisawa, Kanagawa 252-8510, Japan.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2008 Sep;151(1):125-32. doi: 10.1016/j.cbpb.2008.06.006. Epub 2008 Jun 12.

Abstract

To elucidate the molecular properties of the equine glycolytic enzymes equine M(1) (eM(1)) and M(2) (eM(2))-pyruvate kinase (PK), mRNAs were isolated from thoroughbred horse skeletal muscle and hair roots, respectively. The full-length eM(1) and eM(2)-PK cDNAs consist of 2,320 and 2,376 bp, respectively, containing a 1596 bp open reading frame. The cDNAs were mapped to equine chromosome 1, and the equine pyruvate kinase M (PKM) gene consists of twelve exons. Exon 9 of eM(1)-PK and exon 10 of eM(2)-PK were further investigated in five equine species. Out of 55 amino acids encoded by exon 9 in equines, Glu 418 and Lys 422, which are conserved in all PK isozymes among other vertebrates, were substituted by Gln 418 and His 422. Also, the transcriptional regulatory element(s), which have potential for involvement in alternative splicing between these exons, were completely conserved among the equines. In semi-quantitative RT-PCR analysis, strong expression of both eM(1) and eM(2)-PK mRNAs was found in skeletal muscle, heart, and brain of thoroughbred horses. In addition, the authors made the novel finding that eM(2)-PK derived from hair roots has a transcriptional start site different from that of other tissues and is more specific in its expression. These results suggest that eM(1) and eM(2)-PKs may have kinetic properties and transcriptional regulatory mechanisms different from those of other mammals.

摘要

为阐明马糖酵解酶马M(1)(eM(1))和M(2)(eM(2))-丙酮酸激酶(PK)的分子特性,分别从纯种马的骨骼肌和发根中分离出mRNA。全长eM(1)和eM(2)-PK cDNA分别由2320和2376 bp组成,包含一个1596 bp的开放阅读框。这些cDNA被定位到马的1号染色体上,马丙酮酸激酶M(PKM)基因由12个外显子组成。对5个马种的eM(1)-PK的外显子9和eM(2)-PK的外显子10进行了进一步研究。在马的外显子9编码的55个氨基酸中,在其他脊椎动物的所有PK同工酶中保守的Glu 418和Lys 422被Gln 418和His 422取代。此外,这些外显子之间参与可变剪接的潜在转录调控元件在马中完全保守。在半定量RT-PCR分析中,在纯种马的骨骼肌、心脏和大脑中发现了eM(1)和eM(2)-PK mRNA的强表达。此外,作者还发现了一个新现象,即发根来源的eM(2)-PK具有与其他组织不同的转录起始位点,且表达更具特异性。这些结果表明,eM(1)和eM(2)-PK可能具有与其他哺乳动物不同的动力学特性和转录调控机制。

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