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贻贝Mytilus组蛋白多基因家族的分子进化特征:首次记录包含具有“孤子”特征的H1亚型的五个组蛋白基因的串联重复单元。

Molecular evolutionary characterization of the mussel Mytilus histone multigene family: first record of a tandemly repeated unit of five histone genes containing an H1 subtype with "orphon" features.

作者信息

Eirín-López José M, Fernanda Ruiz M, González-Tizón Ana M, Martínez Andrés, Sánchez Lucas, Méndez Josefina

机构信息

Departamento de Biología Celular y Molecular, Universidade da Coruña, Campus de A Zapateira s/n, E-15071-A Coruña, Spain.

出版信息

J Mol Evol. 2004 Feb;58(2):131-44. doi: 10.1007/s00239-003-2531-5.

Abstract

The present work represents the first characterization of a clustered histone repetitive unit containing an H1 gene in a bivalve mollusk. To complete the knowledge on the evolutionary history of the histone multigene family in invertebrates, we undertake its characterization in five mussel Mytilus species, as an extension of our previous work on the H1 gene family. We report the quintet H4-H2B-H2A-H3-H1 as the major organization unit in the genome of Mytilus galloprovincialis with two 5S rRNA genes with interspersed nontranscribed spacer segments linked to the unit, which is not justified by their cotranscription with histone genes. Surprisingly, 3' UTR regions of histone genes show two different mRNA termination signals, a stem-loop and a polyadenylation signal, both related to the evolution of histone gene expression patterns throughout the cell cycle. The clustered H1 histones characterized share essential features with "orphon" H1 genes, suggesting a common evolutionary origin for both histone subtypes which is supported by the reconstructed phylogeny for H1 genes. The characterization of histone genes in four additional Mytilus species revealed the presence of strong purifying selection acting among the members of the family. The chromosomal location of most of the core histone genes studied was identified by FISH close to telomeric regions in M. galloprovincialis. Further analysis on nucleotide variation would be necessary to assess if H1 proteins evolve according to the birth-and-death model of evolution and if the effect of the strong purifying selection maintaining protein homogeneity could account for the homologies detected between clustered and "orphon" variants.

摘要

本研究首次对双壳贝类中包含H1基因的组蛋白重复单元进行了表征。为完善对无脊椎动物组蛋白多基因家族进化史的认识,作为我们先前对H1基因家族研究的扩展,我们对5种贻贝物种进行了表征。我们报告了在加利福尼亚贻贝基因组中,五联体H4 - H2B - H2A - H3 - H1作为主要组织单位,有两个5S rRNA基因,其间隔的非转录间隔区与该单位相连,但其与组蛋白基因的共转录并无依据。令人惊讶的是,组蛋白基因的3' UTR区域显示出两种不同的mRNA终止信号,一种是茎环结构,另一种是多聚腺苷酸化信号,两者均与整个细胞周期中组蛋白基因表达模式的进化有关。所表征的成簇H1组蛋白与“孤儿”H1基因具有共同的基本特征,这表明这两种组蛋白亚型有共同的进化起源,H1基因的系统发育重建也支持这一点。对另外4种贻贝物种的组蛋白基因进行表征,揭示了该家族成员间存在强烈的纯化选择作用。通过荧光原位杂交(FISH)确定了所研究的大多数核心组蛋白基因在加利福尼亚贻贝中靠近端粒区域的染色体定位。若要评估H1蛋白是否按照进化的生死模型进化,以及维持蛋白同质性的强烈纯化选择效应是否能解释成簇和“孤儿”变体之间检测到的同源性,则需要对核苷酸变异进行进一步分析。

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