Folding Keratin Gene Clusters during Skin Regional Specification

皮肤区域特征化过程中的折叠角蛋白基因簇

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作者:Ya-Chen Liang, Ping Wu, Gee-Way Lin, Chih-Kuan Chen, Chao-Yuan Yeh, Stephanie Tsai, Jie Yan, Ting-Xin Jiang, Yung-Chih Lai, David Huang, Mingyang Cai, Raina Choi, Randall B Widelitz, Wange Lu, Cheng-Ming Chuong

Abstract

Regional specification is critical for skin development, regeneration, and evolution. The contribution of epigenetics in this process remains unknown. Here, using avian epidermis, we find two major strategies regulate β-keratin gene clusters. (1) Over the body, macro-regional specificities (scales, feathers, claws, etc.) established by typical enhancers control five subclusters located within the epidermal differentiation complex on chromosome 25; (2) within a feather, micro-regional specificities are orchestrated by temporospatial chromatin looping of the feather β-keratin gene cluster on chromosome 27. Analyses suggest a three-factor model for regional specification: competence factors (e.g., AP1) make chromatin accessible, regional specifiers (e.g., Zic1) target specific genome regions, and chromatin regulators (e.g., CTCF and SATBs) establish looping configurations. Gene perturbations disrupt morphogenesis and histo-differentiation. This chicken skin paradigm advances our understanding of how regulation of big gene clusters can set up a two-dimensional body surface map.

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