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与鸡皮肤区域特异性发育相关的差异调节通路的出现。

Emergence of differentially regulated pathways associated with the development of regional specificity in chicken skin.

作者信息

Chang Kai-Wei, Huang Nancy A, Liu I-Hsuan, Wang Yi-Hui, Wu Ping, Tseng Yen-Tzu, Hughes Michael W, Jiang Ting Xin, Tsai Mong-Hsun, Chen Chien-Yu, Oyang Yen-Jen, Lin En-Chung, Chuong Cheng-Ming, Lin Shau-Ping

机构信息

Genome and Systems Biology Degree Program, National Taiwan University, Taipei, Taiwan.

Genome and Systems Biology Degree Program, Academia Sinica, Taipei, Taiwan.

出版信息

BMC Genomics. 2015 Jan 23;16(1):22. doi: 10.1186/s12864-014-1202-9.

Abstract

BACKGROUND

Regional specificity allows different skin regions to exhibit different characteristics, enabling complementary functions to make effective use of the integumentary surface. Chickens exhibit a high degree of regional specificity in the skin and can serve as a good model for when and how these regional differences begin to emerge.

RESULTS

We used developing feather and scale regions in embryonic chickens as a model to gauge the differences in their molecular pathways. We employed cosine similarity analysis to identify the differentially regulated and co-regulated genes. We applied low cell techniques for expression validation and chromatin immunoprecipitation (ChIP)-based enhancer identification to overcome limited cell availabilities from embryonic chicken skin. We identified a specific set of genes demonstrating a high correlation as being differentially expressed during feather and scale development and maturation. Some members of the WNT, TGF-beta/BMP, and Notch family known to be involved in feathering skin differentiation were found to be differentially regulated. Interestingly, we also found genes along calcium channel pathways that are differentially regulated. From the analysis of differentially regulated pathways, we used calcium signaling pathways as an example for further verification. Some voltage-gated calcium channel subunits, particularly CACNA1D, are expressed spatio-temporally in the skin epithelium. These calcium signaling pathway members may be involved in developmental decisions, morphogenesis, or epithelial maturation. We further characterized enhancers associated with histone modifications, including H3K4me1, H3K27ac, and H3K27me3, near calcium channel-related genes and identified signature intensive hotspots that may be correlated with certain voltage-gated calcium channel genes.

CONCLUSION

We demonstrated the applicability of cosine similarity analysis for identifying novel regulatory pathways that are differentially regulated during development. Our study concerning the effects of signaling pathways and histone signatures on enhancers suggests that voltage-gated calcium signaling may be involved in early skin development. This work lays the foundation for studying the roles of these gene pathways and their genomic regulation during the establishment of skin regional specificity.

摘要

背景

区域特异性使得不同的皮肤区域呈现出不同的特征,从而使互补功能能够有效利用体表。鸡在皮肤方面表现出高度的区域特异性,可作为研究这些区域差异何时以及如何开始出现的良好模型。

结果

我们以胚胎鸡发育中的羽毛和鳞片区域为模型,来衡量它们分子途径的差异。我们采用余弦相似性分析来鉴定差异调节和共同调节的基因。我们应用低细胞技术进行表达验证,并基于染色质免疫沉淀(ChIP)来鉴定增强子,以克服胚胎鸡皮肤细胞可用性有限的问题。我们鉴定出一组特定的基因,它们在羽毛和鳞片发育及成熟过程中差异表达且具有高度相关性。已知参与有羽毛皮肤分化的WNT、TGF-β/BMP和Notch家族的一些成员被发现存在差异调节。有趣的是,我们还发现钙通道途径中的基因也存在差异调节。在差异调节途径的分析中,我们以钙信号通路为例进行进一步验证。一些电压门控钙通道亚基,特别是CACNA1D,在皮肤上皮中呈时空表达。这些钙信号通路成员可能参与发育决策、形态发生或上皮成熟。我们进一步对与组蛋白修饰(包括H3K4me1、H3K27ac和H3K27me3)相关的增强子进行了表征,这些增强子位于钙通道相关基因附近,并鉴定出可能与某些电压门控钙通道基因相关的标志性密集热点。

结论

我们证明了余弦相似性分析在鉴定发育过程中差异调节的新调控途径方面的适用性。我们关于信号通路和组蛋白特征对增强子影响的研究表明,电压门控钙信号可能参与早期皮肤发育。这项工作为研究这些基因途径及其基因组调控在皮肤区域特异性建立过程中的作用奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5408/4326372/7d1d7d6a177a/12864_2014_1202_Fig1_HTML.jpg

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