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首页> 外文期刊>The Plant Cell >Unique, shared, and redundant roles for the Arabidopsis SWI/SNF chromatin remodeling ATPases BRAHMA and SPLAYED
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Unique, shared, and redundant roles for the Arabidopsis SWI/SNF chromatin remodeling ATPases BRAHMA and SPLAYED

机译:拟南芥SWI / SNF染色质重塑ATPases BRAHMA和SPLAYED的独特,共享和冗余角色

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摘要

Chromatin remodeling is emerging as a central mechanism for patterning and differentiation in multicellular eukaryotes. SWI/SNF chromatin remodeling ATPases are conserved in the animal and plant kingdom and regulate transcriptional programs in response to endogenous and exogenous cues. In contrast with their metazoan orthologs, null mutants in two Arabidopsis thaliana SWI/SNF ATPases, BRAHMA (BRM) and SPLAYED (SYD), are viable, facilitating investigation of their role in the organism. Previous analyses revealed that syd and brm null mutants exhibit both similar and distinct developmental defects, yet the functional relationship between the two closely related ATPases is not understood. Another central question is whether these proteins act as general or specific transcriptional regulators. Using global expression studies, double mutant analysis, and protein interaction assays, we find overlapping functions for the two SWI/SNF ATPases. This partial diversification may have allowed expansion of the SWI/SNF ATPase regulatory repertoire, while preserving essential ancestral functions. Moreover, only a small fraction of all genes depends on SYD or BRM for expression, indicating that these SWI/ SNF ATPases exhibit remarkable regulatory specificity. Our studies provide a conceptual framework for understanding the role of SWI/ SNF chromatin remodeling in regulation of Arabidopsis development.
机译:染色质重塑正在成为多细胞真核生物中模式和分化的主要机制。 SWI / SNF染色质重塑ATPase在动植物界中是保守的,并响应内源性和外源性信号来调节转录程序。与它们的后生直系同源物相反,两个拟南芥SWI / SNF ATPases BRAHMA(BRM)和SPLAYED(SYD)中的无效突变体是可行的,有助于对其在生物中的作用进行研究。先前的分析表明syd和brm null突变体同时表现出相似和不同的发育缺陷,但尚不了解两个紧密相关的ATPase之间的功能关系。另一个中心问题是这些蛋白质是充当一般还是特定的转录调节因子。使用全局表达研究,双重突变分析和蛋白质相互作用测定,我们发现两个SWI / SNF ATPase的重叠功能。这种部分多样化可能已扩大了SWI / SNF ATPase的调控范围,同时保留了必要的祖先功能。而且,所有基因中只有一小部分依赖于SYD或BRM进行表达,这表明这些SWI / SNF ATPase表现出显着的调节特异性。我们的研究为理解SWI / SNF染色质重塑在拟南芥发育调控中的作用提供了概念框架。

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