首页> 美国卫生研究院文献>Molecular and Cellular Biology >Scmh1 Has E3 Ubiquitin Ligase Activity for Geminin and Histone H2A and Regulates Geminin Stability Directly or Indirectly via Transcriptional Repression of Hoxa9 and Hoxb4
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Scmh1 Has E3 Ubiquitin Ligase Activity for Geminin and Histone H2A and Regulates Geminin Stability Directly or Indirectly via Transcriptional Repression of Hoxa9 and Hoxb4

机译:Scmh1具有Geminin和组蛋白H2A的E3泛素连接酶活性并通过Hoxa9和Hoxb4的转录抑制直接或间接调节Geminin的稳定性。

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摘要

Polycomb-group (PcG) complex 1 acts as an E3 ubiquitin ligase both for histone H2A to silence transcription and for geminin to regulate its stability. Scmh1 is a substoichiometric component of PcG complex 1 that provides the complex with an interaction domain for geminin. Scmh1 is unstable and regulated through the ubiquitin-proteasome system, but its molecular roles are unknown, so we generated Scmh1-deficient mice to elucidate its function. Loss of Scmh1 caused derepression of Hoxb4 and Hoxa9, direct targets of PcG complex 1-mediated transcriptional silencing in hematopoietic cells. Double knockdown of Hoxb4 and Hoxa9 or transduction of a dominant-negative Hoxb4N→A mutant caused geminin accumulation. Age-related transcriptional downregulation of derepressed Hoxa9 also leads to geminin accumulation. Transduction of Scmh1 lacking a geminin-binding domain restored derepressed expression of Hoxb4 and Hoxa9 but did not downregulate geminin like full-length Scmh1. Each of Hoxb4 and Hoxa9 can form a complex with Roc1-Ddb1-Cul4a to act as an E3 ubiquitin ligase for geminin. We suggest that geminin dysregulation may be restored by derepressed Hoxb4 and Hoxa9 in Scmh1-deficient mice. These findings suggest that PcG and a subset of Hox genes compose a homeostatic regulatory system for determining expression level of geminin.
机译:Polycomb-group(PcG)复合体1充当E3泛素连接酶,用于组蛋白H2A沉默转录,而geminin调节其稳定性。 Scmh1是PcG复合物1的亚化学计量组成部分,它为复合物提供了针对geminin的相互作用域。 Scmh1是不稳定的,并通过遍在蛋白-蛋白酶体系统进行调节,但其分子作用尚不清楚,因此我们产生了Scmh1缺陷型小鼠来阐明其功能。 Scmh1的丢失导致造血细胞中PcG复杂1介导的转录沉默的直接目标Hoxb4和Hoxa9的抑制。 Hoxb4和Hoxa9的双重敲除或显性负Hoxb4N→A突变体的转导引起双倍体蛋白积聚。年龄相关的转录下调的抑制的Hoxa9的下调也导致双胚蛋白的积累。 Scmh1的缺乏geminin结合域的转导恢复了Hoxb4和Hoxa9的表达降低,但没有像全长Scmh1一样下调geminin。 Hoxb4和Hoxa9中的每一个都可以与Roc1-Ddb1-Cul4a形成复合物,以充当geminin的E3泛素连接酶。我们建议在Scmh1缺陷小鼠中,通过抑制Hoxb4和Hoxa9的表达,可以恢复geminin失调。这些发现表明,PcG和Hox基因的一个子集组成了一个稳态调节系统,用于确定geminin的表达水平。

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