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后生动物原肌球蛋白基因进化中的内部和外部并系同源现象。

Internal and external paralogy in the evolution of tropomyosin genes in metazoans.

机构信息

Departament de Genètica, Facultat de Biologia, Universitat de Barcelona, Barcelona, Spain.

出版信息

Mol Biol Evol. 2010 Jul;27(7):1504-17. doi: 10.1093/molbev/msq018. Epub 2010 Feb 10.

Abstract

Nature contains a tremendous diversity of forms both at the organismal and genomic levels. This diversity motivates the twin central questions of molecular evolution: what are the molecular mechanisms of adaptation, and what are the functional consequences of genomic diversity. We report a 22-species comparative analysis of tropomyosin (PPM) genes, which exist in a variety of forms and are implicated in the emergence of a wealth of cellular functions, including the novel muscle functions integral to the functional diversification of bilateral animals. TPM genes encode either or both of long-form [284 amino acid (aa)] and short-form (approximately 248 aa) proteins. Consistent with a role of TPM diversification in the origins and radiation of bilaterians, we find evidence that the muscle-specific long-form protein arose in proximal bilaterian ancestors (the bilaterian 'stem'). Duplication of the 5' end of the gene led to alternative promoters encoding long- and short-form transcripts with distinct functions. This dual-function gene then underwent strikingly parallel evolution in different bilaterian lineages. In each case, recurrent tandem exon duplication and mutually exclusive alternative splicing of the duplicates, with further association between these alternatively spliced exons along the gene, led to long- and short-form-specific exons, allowing for gradual emergence of alternative "internal paralogs" within the same gene. We term these Mutually exclusively Alternatively spliced Tandemly duplicated Exon sets "MATEs". This emergence of internal paralogs in various bilaterians has employed every single TPM exon in at least one lineage and reaches striking levels of divergence with up to 77% of long- and short-form transcripts being transcribed from different genomic regions. Interestingly, in some lineages, these internal alternatively spliced paralogs have subsequently been "externalized" by full gene duplication and reciprocal retention/loss of the two transcript isoforms, a particularly clear case of evolution by subfunctionalization. This parallel evolution of TPM genes in diverse metazoans attests to common selective forces driving divergence of different gene transcripts and represents a striking case of emergence of evolutionary novelty by alternative splicing.

摘要

自然界在生物和基因组层面都存在着巨大的多样性。这种多样性激发了分子进化的两个核心问题:适应的分子机制是什么,基因组多样性的功能后果是什么。我们报告了 22 个物种的肌球蛋白轻链(TPM)基因比较分析,这些基因存在多种形式,与许多细胞功能的出现有关,包括新的肌肉功能,这些功能是双侧动物功能多样化的基础。TPM 基因编码长链[284 个氨基酸(aa)]和短链(约 248 aa)蛋白。与 TPM 多样化在双侧动物起源和辐射中的作用一致,我们发现证据表明,肌肉特异性的长链蛋白起源于近双侧动物祖先(双侧动物“主干”)。基因 5'端的重复导致了编码长链和短链转录本的不同功能的替代启动子。然后,这个具有双重功能的基因在不同的双侧动物谱系中经历了惊人的平行进化。在每种情况下,重复的串联外显子重复和重复的互斥选择性剪接,以及这些选择性剪接的外显子在基因上的进一步关联,导致了长链和短链特异性外显子的出现,允许在同一基因内逐渐出现替代的“内部同源基因”。我们将这些互斥选择性剪接的串联重复外显子集称为“MATEs”。在各种双侧动物中,内部同源基因的出现至少在一个谱系中使用了每一个 TPM 外显子,并且达到了惊人的分化水平,高达 77%的长链和短链转录本来自不同的基因组区域。有趣的是,在一些谱系中,这些内部选择性剪接的同源基因随后通过全基因重复和两个转录本异构体的相互保留/丢失而“外化”,这是一个特别明显的次功能化进化的例子。TPM 基因在不同后生动物中的这种平行进化证明了共同的选择压力驱动不同基因转录本的分化,并代表了通过选择性剪接出现进化新事物的一个显著例子。

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本文引用的文献

1
Ubiquitous internal gene duplication and intron creation in eukaryotes.真核生物中普遍存在的内源性基因重复和内含子产生。
Proc Natl Acad Sci U S A. 2009 Dec 8;106(49):20818-23. doi: 10.1073/pnas.0911093106. Epub 2009 Nov 19.
6
Structure and evolution of tropomyosin genes.原肌球蛋白基因的结构与进化
Adv Exp Med Biol. 2008;644:6-26. doi: 10.1007/978-0-387-85766-4_2.
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Gestalt-binding of tropomyosin to actin filaments.原肌球蛋白与肌动蛋白丝的格式塔结合。
J Muscle Res Cell Motil. 2008;29(6-8):213-9. doi: 10.1007/s10974-008-9157-6. Epub 2008 Dec 31.

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