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参与胚胎干细胞生物学过程的Rhox基因簇在小鼠中的特异性扩增正处于自然选择之下。

A murine specific expansion of the Rhox cluster involved in embryonic stem cell biology is under natural selection.

作者信息

Jackson Melany, Watt Alistair J, Gautier Philippe, Gilchrist Derek, Driehaus Johanna, Graham Gerard J, Keebler Jon, Prugnolle Franck, Awadalla Philip, Forrester Lesley M

机构信息

John Hughes Bennett Laboratory, University of Edinburgh, Western General Hospital, Edinburgh, Scotland, EH4 2XU, UK.

出版信息

BMC Genomics. 2006 Aug 17;7:212. doi: 10.1186/1471-2164-7-212.

Abstract

BACKGROUND

The rodent specific reproductive homeobox (Rhox) gene cluster on the X chromosome has been reported to contain twelve homeobox-containing genes, Rhox1-12.

RESULTS

We have identified a 40 kb genomic region within the Rhox cluster that is duplicated eight times in tandem resulting in the presence of eight paralogues of Rhox2 and Rhox3 and seven paralogues of Rhox4. Transcripts have been identified for the majority of these paralogues and all but three are predicted to produce full-length proteins with functional potential. We predict that there are a total of thirty-two Rhox genes at this genomic location, making it the most gene-rich homoeobox cluster identified in any species. From the 95% sequence similarity between the eight duplicated genomic regions and the synonymous substitution rate of the Rhox2, 3 and 4 paralogues we predict that the duplications occurred after divergence of mouse and rat and represent the youngest homoeobox cluster identified to date. Molecular evolutionary analysis reveals that this cluster is an actively evolving region with Rhox2 and 4 paralogues under diversifying selection and Rhox3 evolving neutrally. The biological importance of this duplication is emphasised by the identification of an important role for Rhox2 and Rhox4 in regulating the initial stages of embryonic stem (ES) cell differentiation.

CONCLUSION

The gene rich Rhox cluster provides the mouse with significant biological novelty that we predict could provide a substrate for speciation. Moreover, this unique cluster may explain species differences in ES cell derivation and maintenance between mouse, rat and human.

摘要

背景

据报道,X染色体上的啮齿动物特异性生殖同源框(Rhox)基因簇包含12个含同源框的基因,即Rhox1 - 12。

结果

我们在Rhox基因簇中鉴定出一个40 kb的基因组区域,该区域串联重复了8次,导致存在8个Rhox2和Rhox3的旁系同源物以及7个Rhox4的旁系同源物。已鉴定出这些旁系同源物中的大多数的转录本,除了3个之外,所有旁系同源物预计都能产生具有功能潜力的全长蛋白质。我们预测在这个基因组位置共有32个Rhox基因,使其成为在任何物种中鉴定出的基因最丰富的同源框基因簇。根据8个重复基因组区域之间95%的序列相似性以及Rhox2、3和4旁系同源物的同义替换率,我们预测这些重复发生在小鼠和大鼠分化之后,代表了迄今为止鉴定出的最年轻的同源框基因簇。分子进化分析表明,该基因簇是一个活跃进化的区域,Rhox2和4旁系同源物处于多样化选择之下,而Rhox3则中性进化。Rhox2和4在调节胚胎干细胞(ES)分化的初始阶段的重要作用的鉴定强调了这种重复的生物学重要性。

结论

基因丰富的Rhox基因簇为小鼠提供了显著的生物学新奇性,我们预测这可能为物种形成提供一个基础。此外,这个独特的基因簇可能解释了小鼠、大鼠和人类在ES细胞衍生和维持方面的物种差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10e1/1562416/fc12776bfb47/1471-2164-7-212-1.jpg

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