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果蝇Ada2b对于生存能力和正常的组蛋白H3乙酰化是必需的。

Drosophila Ada2b is required for viability and normal histone H3 acetylation.

作者信息

Qi Dai, Larsson Jan, Mannervik Mattias

机构信息

Department of Developmental Biology, Wenner-Gren Institute, Arrheniuslaboratories E3, Stockholm University, S-106 91 Stockholm, Sweden.

出版信息

Mol Cell Biol. 2004 Sep;24(18):8080-9. doi: 10.1128/MCB.24.18.8080-8089.2004.

Abstract

Regulation of chromatin through histone acetylation is an important step in gene expression. The Gcn5 histone acetyltransferase is part of protein complexes, e.g., the SAGA complex, that interact with transcriptional activators, targeting the enzyme to specific promoters and assisting in recruitment of the basal RNA polymerase transcription machinery. The Ada2 protein directly binds to Gcn5 and stimulates its catalytic activity. Drosophila contains two Ada2 proteins, Drosophila Ada2a (dAda2a) and dAda2b. We have generated flies that lack dAda2b, which is part of a Drosophila SAGA-like complex. dAda2b is required for viability in Drosophila, and its deletion causes a reduction in histone H3 acetylation. A global hypoacetylation of chromatin was detected on polytene chromosomes in dAda2b mutants. This indicates that the dGcn5-dAda2b complex could have functions in addition to assisting in transcriptional activation through gene-specific acetylation. Although the Drosophila p53 protein was previously shown to interact with the SAGA-like complex in vitro, we find that p53 induction of reaper gene expression occurs normally in dAda2b mutants. Moreover, dAda2b mutant animals show excessive p53-dependent apoptosis in response to gamma radiation. Based on this result, we speculate that dAda2b may be necessary for efficient DNA repair or generation of a DNA damage signal. This could be an evolutionarily conserved function, since a yeast ada2 mutant is also sensitive to a genotoxic agent.

摘要

通过组蛋白乙酰化对染色质进行调控是基因表达中的重要一步。Gcn5组蛋白乙酰转移酶是蛋白质复合物(如SAGA复合物)的一部分,该复合物与转录激活因子相互作用,将该酶靶向特定启动子,并协助募集基础RNA聚合酶转录机制。Ada2蛋白直接与Gcn5结合并刺激其催化活性。果蝇含有两种Ada2蛋白,即果蝇Ada2a(dAda2a)和dAda2b。我们培育出了缺乏dAda2b的果蝇,dAda2b是果蝇中类似SAGA复合物的一部分。dAda2b是果蝇生存所必需的,其缺失会导致组蛋白H3乙酰化减少。在dAda2b突变体的多线染色体上检测到染色质的整体低乙酰化。这表明dGcn5 - dAda2b复合物除了通过基因特异性乙酰化协助转录激活外,可能还具有其他功能。尽管之前已证明果蝇p53蛋白在体外与类似SAGA的复合物相互作用,但我们发现dAda2b突变体中收割者基因表达的p53诱导正常发生。此外,dAda2b突变动物在受到γ辐射时表现出过度的p53依赖性凋亡。基于这一结果,我们推测dAda2b可能是有效DNA修复或产生DNA损伤信号所必需的。这可能是一种进化上保守的功能,因为酵母ada2突变体也对遗传毒性剂敏感。

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