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基于外显子模块的定义及其保守界面的内含子起源。

Origins of introns based on the definition of exon modules and their conserved interfaces.

作者信息

de Roos Albert D G

机构信息

The Beagle Armada Postbus 964, 4600 AZ Bergen op Zoom, The Netherlands.

出版信息

Bioinformatics. 2005 Jan 1;21(1):2-9. doi: 10.1093/bioinformatics/bth475. Epub 2004 Aug 12.

Abstract

Central to the unraveling of the early evolution of the genome is the origin and role of introns. The evolution of the genome can be characterized by a continuous expansion of functional modules that occurs without the interruption of existing processes. The design-by-contract methodology of software development offers a modular approach to design that seeks to increase flexibility by focusing on the design of constant interfaces between functional modules. Here, it is shown that design-by-contract can offer a framework for genome evolution. The definition of an ancient exon module with identical splice sites leads to a relatively simple sequence of events that explains the role of introns, intron phase differences and the evolution of multi-exon proteins in an RNA world. An interaction of the experimentally defined six-nucleotide splicing consensus sequence together with a limited number of primitive ribozymes can account for a rapid creation of protein diversity.

摘要

内含子的起源和作用是解开基因组早期进化之谜的核心。基因组的进化可以通过功能模块的持续扩展来表征,这种扩展在不中断现有过程的情况下发生。软件开发中的契约式设计方法提供了一种模块化设计方法,旨在通过专注于功能模块之间恒定接口的设计来提高灵活性。在此表明,契约式设计可以为基因组进化提供一个框架。具有相同剪接位点的古老外显子模块的定义导致了一系列相对简单的事件,这些事件解释了内含子的作用、内含子相位差异以及RNA世界中多外显子蛋白质的进化。实验确定的六核苷酸剪接共有序列与有限数量的原始核酶之间的相互作用可以解释蛋白质多样性的快速产生。

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