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豚鼠血浆α-巨球蛋白和鼠球蛋白编码cDNA的克隆与测序:对α-巨球蛋白家族分子进化的启示

Cloning and sequencing of cDNAs encoding plasma alpha-macroglobulin and murinoglobulin from guinea pig: implications for molecular evolution of alpha-macroglobulin family.

作者信息

Iwasaki H, Suzuki Y, Sinohara H

机构信息

Department of Biochemistry, Kinki University School of Medicine, Osaka.

出版信息

J Biochem. 1996 Dec;120(6):1167-75. doi: 10.1093/oxfordjournals.jbchem.a021537.

Abstract

Several clones encoding plasma alpha-macroglobulin and murinoglobulin were isolated from guinea pig liver cDNA library and sequenced. The clones for alpha-macroglobulin contained overlapping sequences which together spanned a stretch of 4,546 nucleotides with one open reading frame coding for 1,476 amino acid residues. The clones for murinoglobulin contained overlapping sequences which together spanned a stretch of 4,578 nucleotides with one open reading frame coding for 1,464 amino acid residues. The phylogenetic analyses of 11 proteins of the alpha-macroglobulin family revealed that the mammalian tetrameric alpha-macroglobulins consist of two main branches: alpha M-1 subfamily (rat alpha 1- and mouse alpha-macroglobulins) and alpha M-2 subfamily (human alpha 2-, rat alpha 2-, and guinea pig alpha-macroglobulins). This dichotomy is in good accordance with their immunological, chemical, and physicochemical properties, and indicates that guinea pig alpha-macroglobulin is orthologous to human and rat alpha 2-macroglobulins but paralogous to rat alpha 1- and mouse alpha-macroglobulins. The divergence of the two subfamilies was a phylogenetically ancient event which occurred around the separation of metatherians and eutherians. The genes of the two subfamilies have been maintained in the rat, but either one became extinct in the mouse, guinea pig, or human. The tree also shows that guinea pig murinoglobulin forms one clade with mouse and rat murinoglobulins (alpha 1-inhibitor 3) prior to joining the alpha M-2 lineage, and suggests that murinoglobulin is not a primitive form of tetrameric alpha-macroglobulin, but rather has evolved under selective pressure which is different from that of the tetrameric paralogues.

摘要

从豚鼠肝脏cDNA文库中分离出几个编码血浆α-巨球蛋白和鼠球蛋白的克隆并进行测序。α-巨球蛋白的克隆包含重叠序列,这些序列共同跨越4546个核苷酸的一段,有一个开放阅读框编码1476个氨基酸残基。鼠球蛋白的克隆包含重叠序列,这些序列共同跨越4578个核苷酸的一段,有一个开放阅读框编码1464个氨基酸残基。对α-巨球蛋白家族11种蛋白质的系统发育分析表明,哺乳动物的四聚体α-巨球蛋白由两个主要分支组成:αM-1亚家族(大鼠α1-和小鼠α-巨球蛋白)和αM-2亚家族(人α2-、大鼠α2-和豚鼠α-巨球蛋白)。这种二分法与它们的免疫学、化学和物理化学性质非常一致,表明豚鼠α-巨球蛋白与人和大鼠α2-巨球蛋白是直系同源的,但与大鼠α1-和小鼠α-巨球蛋白是旁系同源的。两个亚家族的分歧是一个系统发育上古老的事件,发生在有袋类和真兽类分离前后。两个亚家族的基因在大鼠中得以保留,但在小鼠、豚鼠或人类中其中一个已经灭绝。该树状图还显示,豚鼠鼠球蛋白在加入αM-2谱系之前与小鼠和大鼠鼠球蛋白(α1-抑制剂3)形成一个分支,并表明鼠球蛋白不是四聚体α-巨球蛋白的原始形式,而是在与四聚体旁系同源物不同的选择压力下进化而来的。

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