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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >The maize HMGA protein is localized to the nucleolus and can be acetylated in vitro at its globular domain, and phosphorylation by CDK reduces its binding activity to AT-rich DNA.
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The maize HMGA protein is localized to the nucleolus and can be acetylated in vitro at its globular domain, and phosphorylation by CDK reduces its binding activity to AT-rich DNA.

机译:玉米HMGA蛋白位于核仁中,可以在其球状结构域进行体外乙酰化,而CDK的磷酸化作用会降低其与富含AT的DNA的结合活性。

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摘要

The high mobility group (HMG) proteins are nonhistone chromosomal proteins that participate in diverse nuclear activities including chromatin structure and gene regulation. We previously studied the biochemistry of the maize HMGA protein and its role in transcriptional regulation during maize endosperm development. Here, we extended our study and showed that a strong binding of ZmHMGA to AT-rich DNA requires at least three AT-hook motifs; two motifs showed a significant reduction whereas a single motif was not sufficient for binding. CDK phosphorylation sites situated between AT-hook3 and AT-hook4 were strongly phosphorylated by a SUC1-associated kinase; no in vitro phosphorylation is evident for the AtHMGA protein. Phosphorylation of ZmHMGA reduced its binding to AT-rich DNA in vitro. The maize HMGA protein fused to GFP was localized in the nucleus of transgenic Arabidopsis plants tending to concentrate within the nucleolus. Localization to the nucleolus was conferred by the C-terminal portion of the protein containing the AT-hooks. ZmHMGA was acetylated in vitro on its N-terminal globular domain by the human PCAF acetyltransferase. Our results suggest that ZmHMGA participates in nucleolar function and that its role may be regulated posttranslationally by phosphorylation and acetylation.
机译:高迁移率族(HMG)蛋白是非组蛋白染色体蛋白,可参与多种核活动,包括染色质结构和基因调控。我们先前研究了玉米HMGA蛋白的生物化学及其在玉米胚乳发育过程中在转录调控中的作用。在这里,我们扩展了研究范围,并表明ZmHMGA与富含AT的DNA的强结合至少需要三个AT钩基序。两个基序显示显着减少,而单个基序不足以结合。位于AT-hook3和AT-hook4之间的CDK磷酸化位点被SUC1相关激酶强烈磷酸化。 AtHMGA蛋白没有明显的体外磷酸化。 ZmHMGA的磷酸化在体外降低了其与富含AT的DNA的结合。与GFP融合的玉米HMGA蛋白位于趋于集中在核仁中的转基因拟南芥植物的细胞核中。通过含有AT-钩的蛋白质的C-末端部分赋予核仁定位。 ZmHMGA在体外被人PCAF乙酰转移酶乙酰化,在其N端球形结构域上被乙酰化。我们的结果表明ZmHMGA参与核仁功能,其作用可能在翻译后受到磷酸化和乙酰化的调节。

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