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检验基因的外显子理论:来自蛋白质结构的证据。

Testing the exon theory of genes: the evidence from protein structure.

作者信息

Stoltzfus A, Spencer D F, Zuker M, Logsdon J M, Doolittle W F

机构信息

Department of Biochemistry, Dalhousie University, Halifax, Nova Scotia, Canada.

出版信息

Science. 1994 Jul 8;265(5169):202-7. doi: 10.1126/science.8023140.

Abstract

A tendency for exons to correspond to discrete units of protein structure in protein-coding genes of ancient origin would provide clear evidence in favor of the exon theory of genes, which proposes that split genes arose not by insertion of introns into unsplit genes, but from combinations of primordial mini-genes (exons) separated by spacers (introns). Although putative examples of such correspondence have strongly influenced previous debate on the origin of introns, a general correspondence has not been rigorously proved. Objective methods for detecting correspondences were developed and applied to four examples that have been cited previously as evidence of the exon theory of genes. No significant correspondence between exons and units of protein structure was detected, suggesting that the putative correspondence does not exist and that the exon theory of genes is untenable.

摘要

在起源古老的蛋白质编码基因中,外显子倾向于对应蛋白质结构的离散单元,这将为基因外显子理论提供明确证据。该理论认为,断裂基因并非通过内含子插入连续基因而产生,而是由被间隔序列(内含子)分隔的原始小基因(外显子)组合而成。尽管此类对应的推测性例子对先前关于内含子起源的争论产生了重大影响,但尚未得到严格的普遍对应证明。人们开发了用于检测对应关系的客观方法,并将其应用于四个先前被引为基因外显子理论证据的例子。未检测到外显子与蛋白质结构单元之间存在显著对应关系,这表明推测的对应关系并不存在,基因外显子理论站不住脚。

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