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果蝇中组蛋白乙酰转移酶人类同源物Dmel\TIP60的克隆与特性分析:Dmel\TIP60对多细胞发育至关重要。

The cloning and characterization of the histone acetyltransferase human homolog Dmel\TIP60 in Drosophila melanogaster: Dmel\TIP60 is essential for multicellular development.

作者信息

Zhu Xianmin, Singh Neetu, Donnelly Christopher, Boimel Pamela, Elefant Felice

机构信息

Department of Bioscience and Biotechnology, Drexel University, Philadelphia, Pennsylvania 19104.

出版信息

Genetics. 2007 Mar;175(3):1229-40. doi: 10.1534/genetics.106.063685. Epub 2006 Dec 18.

Abstract

Chromatin packaging directly influences gene programming as it permits only certain portions of the genome to be activated in any given developmental stage, cell, and tissue type. Histone acetyltransferases (HATs) are a key class of chromatin regulatory proteins that mediate such developmental chromatin control; however, their specific roles during multicellular development remain unclear. Here, we report the first isolation and developmental characterization of a Drosophila HAT gene (Dmel\TIP60) that is the homolog of the human HAT gene TIP60. We show that Dmel\TIP60 is differentially expressed during Drosophila development, with transcript levels significantly peaking during embryogenesis. We further demonstrate that reducing endogenous Dmel\TIP60 expression in Drosophila embryonic cells by RNAi results in cellular defects and lethality. Finally, using a GAL4-targeted RNAi system in Drosophila, we show that ubiquitous or mesoderm/muscle-specific reduction of Dmel\TIP60 expression results in lethality during fly development. Our results suggest a mechanism for HAT regulation involving developmental control of HAT expression profiles and show that Dmel\TIP60 is essential for multicellular development. Significantly, our inducible and targeted HAT knockdown system in Drosophila now provides a powerful tool for effectively studying the roles of TIP60 in specific tissues and cell types during development.

摘要

染色质包装直接影响基因编程,因为它在任何给定的发育阶段、细胞和组织类型中只允许基因组的某些部分被激活。组蛋白乙酰转移酶(HATs)是一类关键的染色质调节蛋白,介导这种发育过程中的染色质控制;然而,它们在多细胞发育过程中的具体作用仍不清楚。在这里,我们报道了果蝇HAT基因(Dmel\TIP60)的首次分离和发育特征,它是人类HAT基因TIP60的同源物。我们表明,Dmel\TIP60在果蝇发育过程中差异表达,转录水平在胚胎发生期间显著达到峰值。我们进一步证明,通过RNAi降低果蝇胚胎细胞中内源性Dmel\TIP60的表达会导致细胞缺陷和致死性。最后,利用果蝇中的GAL4靶向RNAi系统,我们表明普遍存在的或中胚层/肌肉特异性的Dmel\TIP60表达降低会导致果蝇发育过程中的致死性。我们的结果提示了一种HAT调节机制,涉及HAT表达谱的发育控制,并表明Dmel\TIP60对多细胞发育至关重要。重要的是,我们在果蝇中可诱导和靶向的HAT敲低系统现在为有效研究TIP60在发育过程中特定组织和细胞类型中的作用提供了一个强大的工具。

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