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首页> 外文期刊>Molecular and Cellular Biology >An Acetylation/Deacetylation-SUMOylation Switch through a Phylogenetically Conserved ψKXEP Motif in the Tumor Suppressor HIC1 Regulates Transcriptional Repression Activity
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An Acetylation/Deacetylation-SUMOylation Switch through a Phylogenetically Conserved ψKXEP Motif in the Tumor Suppressor HIC1 Regulates Transcriptional Repression Activity

机译:乙酰化/脱乙酰化-SUMOylation开关通过系统发育上保守的抑制因子HIC1的ψKXEP母题调控转录抑制活性。

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摘要

Tumor suppressor HIC1 (hypermethylated in cancer 1) is a gene that is essential for mammalian development, epigenetically silenced in many human tumors, and involved in a complex pathway regulating P53 tumor suppression activity. HIC1 encodes a sequence-specific transcriptional repressor containing five Krüppel-like C2H2 zinc fingers and an N-terminal BTB/POZ repression domain. Here, we show that endogenous HIC1 is SUMOylated in vivo on a phylogenetically conserved lysine, K314, located in the central region which is a second repression domain. K314R mutation does not influence HIC1 subnuclear localization but significantly reduces its transcriptional repression potential, as does the mutation of the other conserved residue in the ψKXE consensus, E316A, or the overexpression of the deSUMOylase SSP3/SENP2. Furthermore, HIC1 is acetylated in vitro by P300/CBP. Strikingly, the K314R mutant is less acetylated than wild-type HIC1, suggesting that this lysine is a target for both SUMOylation and acetylation. We further show that HIC1 transcriptional repression activity is positively controlled by two types of deacetylases, SIRT1 and HDAC4, which increase the deacetylation and SUMOylation, respectively, of K314. Knockdown of endogenous SIRT1 by the transfection of short interfering RNA causes a significant loss of HIC1 SUMOylation. Thus, this dual-deacetylase complex induces either a phosphorylation-dependent acetylation-SUMOylation switch through a ψKXEXXSP motif, as previously shown for MEF2, or a phosphorylation-independent switch through a ψKXEP motif, as shown here for HIC1, since P317A mutation severely impairs HIC1 acetylation. Finally, our results demonstrate that HIC1 is a target of the class III deacetylase SIRT1 and identify a new posttranslational modification step in the P53-HIC1-SIRT1 regulatory loop.
机译:抑癌基因 HIC1 h 超甲基化的 i n c 祖先1)是哺乳动物发育必不可少的基因,在许多人类肿瘤中表观遗传学沉默,并参与调节P53肿瘤抑制活性的复杂途径。 HIC1 编码含有五个Krüppel样C 2 H 2 锌指和N的序列特异性转录阻遏物-末端BTB / POZ抑制域。在这里,我们显示内源性HIC1在系统发育上保守的赖氨酸K314体内SUMO酰化,该赖氨酸位于第二个抑制域的中央区域。 K314R突变不会影响HIC1的亚核定位,但会显着降低其转录抑制潜能,就像ψKXE共有序列E316A中其他保守残基的突变或deSUMOylase SSP3 / SENP2的过表达一样。此外,HIC1在体外被P300 / CBP乙酰化。令人惊讶的是,K314R突变体的乙酰化程度低于野生型HIC1,表明该赖氨酸既是SUMOylation又是乙酰化的靶标。我们进一步显示,HIC1的转录抑制活性受到两种类型的脱乙酰基酶SIRT1和HDAC4的正调控,这两种酶分别增加K314的脱乙酰基和SUMOylation。通过短干扰RNA的转染敲低内源性SIRT1导致HIC1 SUMOylation的重大损失。因此,这种双脱乙酰酶复合物或者通过ψKXEXXSP模体诱导磷酸化依赖性乙酰化-SUMOylation转换,如先前针对MEF2所示,或者通过ψKXEP模体诱导磷酸化独立的转换,如此处针对HIC1所示,因为P317A突变会严重损害HIC1乙酰化。最后,我们的结果证明HIC1是III类脱乙酰基酶SIRT1的靶标,并在P53-HIC1-SIRT1调节环中确定了新的翻译后修饰步骤。

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