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Functional Analysis of the SIN3-Histone Deacetylase RPD3-RbAp48-Histone H4 Connection in the Xenopus Oocyte

机译:爪蟾卵母细胞中SIN3-组蛋白脱乙酰基酶RPD3-RbAp48-组蛋白H4连接的功能分析

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摘要

We investigated the protein associations and enzymatic requirements for the Xenopus histone deacetylase catalytic subunit RPD3 to direct transcriptional repression in Xenopus oocytes. Endogenous Xenopus RPD3 is present in nuclear and cytoplasmic pools, whereas RbAp48 and SIN3 are predominantly nuclear. We cloned Xenopus RbAp48 and SIN3 and show that expression of RPD3, but not RbAp48 or SIN3, leads to an increase in nuclear and cytoplasmic histone deacetylase activity and transcriptional repression of the TRβA promoter. This repression requires deacetylase activity and nuclear import of RPD3 mediated by a carboxy-terminal nuclear localization signal. Exogenous RPD3 is not incorporated into previously described oocyte deacetylase and ATPase complexes but cofractionates with a component of the endogenous RbAp48 in the oocyte nucleus. We show that RPD3 associates with RbAp48 through N- and C-terminal contacts and that RbAp48 also interacts with SIN3. Xenopus RbAp48 selectively binds to the segment of the N-terminal tail immediately proximal to the histone fold domain of histone H4 in vivo. Exogenous RPD3 may be targeted to histones through interaction with endogenous RbAp48 to direct transcriptional repression of the Xenopus TRβA promoter in the oocyte nucleus. However, the exogenous RPD3 deacetylase functions to repress transcription in the absence of a requirement for association with SIN3 or other targeted corepressors.
机译:我们调查了非洲爪蟾组蛋白脱乙酰基酶催化亚基RPD3的蛋白质协会和酶促要求,以指导非洲爪蟾卵母细胞的转录抑制。内源性非洲爪蟾RPD3存在于核和细胞质库中,而RbAp48和SIN3主要是核。我们克隆了非洲爪蟾RbAp48和SIN3,并显示RPD3而不是RbAp48或SIN3的表达导致核和细胞质组蛋白脱乙酰基酶活性的增加以及TRβA启动子的转录抑制。这种抑制作用需要脱乙酰基酶活性和由羧基末端核定位信号介导的RPD3的核输入。未将外源RPD3掺入先前描述的卵母细胞脱乙酰酶和ATPase复合物中,但与卵母细胞核中内源性RbAp48的成分共馏分。我们显示RPD3通过N和C终端接触与RbAp48关联,并且RbAp48也与SIN3相互作用。非洲爪蟾RbAp48在体内选择性地结合到紧邻组蛋白H4的组蛋白折叠域的N末端尾巴部分。外源RPD3可以通过与内源RbAp48相互作用靶向组蛋白,以指导卵母细胞核中爪蟾TRβA启动子的转录抑制。但是,外源RPD3脱乙酰基酶的功能是抑制转录,而无需与SIN3或其他靶向的心脏加压因子结合。

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