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首页> 外文期刊>DNA and Cell Biology >The transactivation function of the Pea3 subfamily Ets transcription factors is regulated by sumoylation.
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The transactivation function of the Pea3 subfamily Ets transcription factors is regulated by sumoylation.

机译:Pea3亚家族Ets转录因子的反式激活功能受sumoylation调节。

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Pea3, an Ets transcriptional factor, comprises multiple regulatory domains that affect its DNA binding and transcriptional activation. The aim of this work is to uncover the mechanism of action of negative regulatory regions flanking the transactivation domain. Mutagenesis of amino acid residues in the C-terminal negative regulatory region for transactivation revealed critical residues, including a lysine residue, K96, required for its function. Corresponding mutations in the closely related Pea3 subfamily members, Erm and Er81, also dramatically increased the transactivation capacity of their activation domains. Interestingly, all three proteins are sumoylated at this conserved lysine residue. Pea3 contains four other lysines, K222, K256, K318, and K437, embedded in a perfect SUMO consensus motif. The contribution of these lysine residues to the regulation of Pea3 activity and their sumoylation pattern was explored using a GAL4-PEA3 chimera devoid of the ETS DNA-binding domain and by analyzing the native protein. All four candidate SUMO sites included in the GAL4-PEA3 chimera were modified by sumoylation, and their simultaneous mutation dramatically increased the transactivation potential of Pea3. Similar analysis of full-length Pea3 confirmed K96, K222, and K256 as major SUMO modification sites. Collectively, these observations suggest that the activity of Pea3 and its paralogs, Erm and Er81, is negatively regulated by sumoylation.
机译:Ets转录因子Pea3包含多个调节域,这些域影响其DNA结合和转录激活。这项工作的目的是揭示反式激活域两侧的负调控区域的作用机制。突变的C端负调控区域中的氨基酸残基进行了诱变,揭示了其功能所需的关键残基,包括赖氨酸残基K96。密切相关的Pea3亚家族成员Erm和Er81中的相应突变也显着增加了其激活域的反式激活能力。有趣的是,所有三个蛋白质都在这个保守的赖氨酸残基上被磺酰化。 Pea3包含其他四个赖氨酸,分别以完美的SUMO共有基序嵌入K222,K256,K318和K437。使用不含ETS DNA结合结构域的GAL4-PEA3嵌合体并通过分析天然蛋白质,探索了这些赖氨酸残基对Pea3活性及其豆酰化模式调节的贡献。 GAL4-PEA3嵌合体中包括的所有四个候选SUMO位点均通过sumoylation修饰,并且它们的同时突变显着增加了Pea3的反式激活潜能。对全长Pea3的类似分析确认了K96,K222和K256是主要的SUMO修饰位点。总体而言,这些观察结果表明,豌豆3及其旁系同源物Erm和Er81的活性受到磺酰基化的负调控。

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