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在果蝇中,一个来自小鼠 HoxD 基因座的功能保守边界元件需要 GAGA 因子。

A functionally conserved boundary element from the mouse HoxD locus requires GAGA factor in Drosophila.

机构信息

Centre for Cellular and Molecular Biology, Council for Scientific and Industrial Research, Uppal Road, Hyderabad 500 007, India.

出版信息

Development. 2010 Dec;137(24):4239-47. doi: 10.1242/dev.058701.

Abstract

Hox genes are necessary for proper morphogenesis and organization of various body structures along the anterior-posterior body axis. These genes exist in clusters and their expression pattern follows spatial and temporal co-linearity with respect to their genomic organization. This colinearity is conserved during evolution and is thought to be constrained by the regulatory mechanisms that involve higher order chromatin structure. Earlier studies, primarily in Drosophila, have illustrated the role of chromatin-mediated regulatory processes, which include chromatin domain boundaries that separate the domains of distinct regulatory features. In the mouse HoxD complex, Evx2 and Hoxd13 are located ∼ 9 kb apart but have clearly distinguishable temporal and spatial expression patterns. Here, we report the characterization of a chromatin domain boundary element from the Evx2-Hoxd13 region that functions in Drosophila as well as in mammalian cells. We show that the Evx2-Hoxd13 region has sequences conserved across vertebrate species including a GA repeat motif and that the Evx2-Hoxd13 boundary activity in Drosophila is dependent on GAGA factor that binds to the GA repeat motif. These results show that Hox genes are regulated by chromatin mediated mechanisms and highlight the early origin and functional conservation of such chromatin elements.

摘要

Hox 基因对于沿身体前后轴的各种身体结构的正确形态发生和组织是必需的。这些基因存在于簇中,其表达模式与其基因组组织在空间和时间上具有共线性。这种共线性在进化过程中是保守的,被认为受到涉及高级染色质结构的调节机制的限制。早期的研究,主要在果蝇中,说明了染色质介导的调节过程的作用,包括分离不同调节特征域的染色质域边界。在小鼠 HoxD 复合物中,Evx2 和 Hoxd13 相隔约 9 kb,但具有明显可区分的时空表达模式。在这里,我们报告了来自 Evx2-Hoxd13 区域的染色质域边界元件的特征,该元件在果蝇以及哺乳动物细胞中均具有功能。我们表明,Evx2-Hoxd13 区域在包括 GA 重复基序在内的脊椎动物物种中具有保守序列,并且果蝇中 Evx2-Hoxd13 边界活性依赖于结合到 GA 重复基序的 GAGA 因子。这些结果表明 Hox 基因受到染色质介导的机制的调节,并强调了这种染色质元件的早期起源和功能保守性。

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