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首页> 外文期刊>BMC Developmental Biology >Diversity of human and mouse homeobox gene expression in development and adult tissues
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Diversity of human and mouse homeobox gene expression in development and adult tissues

机译:人类和小鼠同源盒基因在发育和成人组织中表达的多样性

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Background Homeobox genes encode a diverse set of transcription factors implicated in a vast range of biological processes including, but not limited to, embryonic cell fate specification and patterning. Although numerous studies report expression of particular sets of homeobox genes, a systematic analysis of the tissue specificity of homeobox genes is lacking. Results Here we analyse publicly-available transcriptome data from human and mouse developmental stages, and adult human tissues, to identify groups of homeobox genes with similar expression patterns. We calculate expression profiles for 242 human and 278 mouse homeobox loci across a combination of 59 human and 12 mouse adult tissues, early and late developmental stages. This revealed 20 human homeobox genes with widespread expression, primarily from the TALE, CERS and ZF classes. Most homeobox genes, however, have greater tissue-specificity, allowing us to compile homeobox gene expression lists for neural tissues, immune tissues, reproductive and developmental samples, and for numerous organ systems. In mouse development, we propose four distinct phases of homeobox gene expression: oocyte to zygote; 2-cell; 4-cell to blastocyst; early to mid post-implantation. The final phase change is marked by expression of ANTP class genes. We also use these data to compare expression specificity between evolutionarily-based gene classes, revealing that ANTP, PRD, LIM and POU homeobox gene classes have highest tissue specificity while HNF, TALE, CUT and CERS are most widely expressed. Conclusions The homeobox genes comprise a large superclass and their expression patterns are correspondingly diverse, although in a broad sense related to an evolutionarily-based classification. The ubiquitous expression of some genes suggests roles in general cellular processes; in contrast, most human homeobox genes have greater tissue specificity and we compile useful homeobox datasets for particular tissues, organs and developmental stages. The identification of a set of eutherian-specific homeobox genes peaking from human 8-cell to morula stages suggests co-option of new genes to new developmental roles in evolution.
机译:背景同源异型盒基因编码多种转录因子,这些转录因子涉及广泛的生物学过程,包括但不限于胚胎细胞命运规范和模式。尽管许多研究报道了特定的同源盒基因集的表达,但是缺乏对同源盒基因的组织特异性的系统分析。结果在这里,我们分析了来自人类和小鼠发育阶段以及成年人类组织的公开转录组数据,以鉴定具有相似表达模式的同源异型框基因组。我们计算发展的早期和晚期的59个人和12小鼠成年组织的组合中的242人和278小鼠同源框基因座的表达谱。这揭示了20种具有广泛表达的人类同源盒基因,主要来自TALE,CERS和ZF类。但是,大多数同源盒基因具有更大的组织特异性,使我们能够为神经组织,免疫组织,生殖和发育样品以及众多器官系统编制同源盒基因表达列表。在小鼠的发育中,我们提出了同源盒基因表达的四个不同阶段:卵母细胞到合子;卵母细胞到合子。 2格; 4细胞到胚泡;植入后早期至中期。最终的相变以ANTP类基因的表达为标志。我们还使用这些数据来比较基于进化的基因类别之间的表达特异性,揭示了ANTP,PRD,LIM和POU同源盒基因类别具有最高的组织特异性,而HNF,TALE,CUT和CERS的表达最为广泛。结论同源异型框基因包括一个大的超类,它们的表达方式也相应地不同,尽管从广义上讲与基于进化的分类有关。一些基因的普遍表达暗示了其在一般细胞过程中的作用。相反,大多数人类同源盒基因具有更高的组织特异性,我们针对特定组织,器官和发育阶段汇编有用的同源盒数据集。鉴定一组从人8细胞到桑ula虫阶段达到峰值的特定于欧特异的同源异型框基因,表明新基因在进化中具有新的发展作用。

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