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MHC基因中的茎环结构潜能:评估正向达尔文选择的新方法?

Stem-loop potential in MHC genes: a new way of evaluating positive Darwinian selection?

作者信息

Forsdyke D R

机构信息

Department of Biochemistry, Queen's University, Kingston, Ontario, Canada K7L3N6.

出版信息

Immunogenetics. 1996;43(4):182-9. doi: 10.1007/BF00587298.

Abstract

The domains of polymorphic major histocompatibility complex (MHC) proteins which interact with peptides and T-cell receptors are considered to have been under positive evolutionary selection pressure. Evidence for this is a high ratio of non-synonymous to synonymous mutations in the corresponding genomic domains. By this criterion snake venom phospholipase A2 genes have also been under positive selection pressure. Recent studies of the latter genes indicate that positive selection has overridden an evolutionary pressure on base order which normally promotes the potential to extrude single-strand stem-loops from supercoiled duplex DNA ( fold pressure ). This has resulted in base order-dependent stem-loop potential being shifted to introns, which are highly conserved between species. It is now shown that, like snake venom phospholipase A2 genes, the domains of polymorphic MHC genes which appear to have responded to positive selection pressure have decreased base order-dependent stem-loop potential. The evolutionary pressure to generate stem-loop potential (believed to be important for recombination) has been overridden less in exons under negative purifying selection than in exons under positive Darwinian selection. Thus, base order-dependent stem-loop potential shows promise as an independent indicator of positive selection.

摘要

与肽和T细胞受体相互作用的多态性主要组织相容性复合体(MHC)蛋白的结构域被认为处于正向进化选择压力之下。相应基因组结构域中非同义突变与同义突变的比例较高,这就是证据。按照这个标准,蛇毒磷脂酶A2基因也处于正向选择压力之下。对后一类基因的最新研究表明,正向选择已经压倒了对碱基顺序的进化压力,这种压力通常会促进从超螺旋双链DNA中挤出单链茎环的潜力(折叠压力)。这导致碱基顺序依赖性茎环潜力转移到内含子,而内含子在物种间高度保守。现在表明,与蛇毒磷脂酶A2基因一样,似乎对正向选择压力有反应的多态性MHC基因结构域的碱基顺序依赖性茎环潜力降低。在负向纯化选择下的外显子中,产生茎环潜力(被认为对重组很重要)的进化压力比在正向达尔文选择下的外显子中受到的影响要小。因此,碱基顺序依赖性茎环潜力有望作为正向选择的独立指标。

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