首页> 外文期刊>Biochimica et biophysica acta. Gene structure and expression >Molecular cloning and sequence analysis of cDNA encoding plasma α-1-antiproteinase from Syrian hamster: implications for the evolution of Rodentia
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Molecular cloning and sequence analysis of cDNA encoding plasma α-1-antiproteinase from Syrian hamster: implications for the evolution of Rodentia

机译:叙利亚仓鼠血浆α-1-抗蛋白酶编码cDNA的分子克隆和序列分析:对啮齿类动物进化的影响

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摘要

Complementary DNA clones encoding plasma α-1-antiproteinase (also called α-1-antitrypsin or α-1-proteinase inhibitor) were isolated from Syrian hamster liver cDNA library and sequenced. The deduced amino acid sequence of putative reactive site (P3-P′3) was Ile-Pro-Met-Ser-Val-Pro, characteristic of α-1-antiproteinase of orthodox type (Suzuki, Y. et al. (1991) J. Biol. Chem. 266, 928–932). A molecular phylogenetic tree of all known orthologous proteins was constructed based on the synonymous substitution rate. The result shows that the hamster has branched off first before the divergence among mice, rats, and gerbils, and that the rabbit is the closest relative of the guinea pig which is separated from the rodents. Although this tree differs largely from the classical phylogeny based on the morphology (hamsters and gerbils belong to the same family, Cricetidae, and the guinea pig belongs to the order Rodentia), it lends support to recent concepts that the hamster and guinea pig differ, in a number of biochemical features, not only from each other but also from mice and rats, and that the guinea pig may belong to an order distinct from Rodentia.
机译:从叙利亚仓鼠肝脏cDNA文库中分离出编码血浆α-1-抗蛋白酶(也称为α-1-抗胰蛋白酶或α-1-蛋白酶抑制剂)的互补DNA克隆并进行测序。推定的反应位点(P3-P'3)的推导氨基酸序列为Ile-Pro-Met-Ser-Val-Pro,具有正统型α-1-抗蛋白酶的特征(Suzuki,Y. et al。(1991) J. Biol。Chem。266,928–932)。基于同义取代率,构建了所有已知直系同源蛋白的分子系统树。结果表明,仓鼠首先在小鼠,大鼠和沙鼠之间发生分歧之前就分支了,兔子是豚鼠中与啮齿动物分离的最亲近的亲戚。尽管这棵树与基于形态的经典系统发育学大相径庭(仓鼠和沙鼠属于同一科,C科,而豚鼠属于啮齿目),但它为仓鼠和豚鼠有所不同的最新概念提供了支持,在许多生化特征上,不仅彼此而且还来自小鼠和大鼠,并且豚鼠可能属于不同于Rodentia的动物。

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