首页> 美国卫生研究院文献>PLoS Genetics >A Positive Feedback Loop Links Opposing Functions of P-TEFb/Cdk9 and Histone H2B Ubiquitylation to Regulate Transcript Elongation in Fission Yeast
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A Positive Feedback Loop Links Opposing Functions of P-TEFb/Cdk9 and Histone H2B Ubiquitylation to Regulate Transcript Elongation in Fission Yeast

机译:正反馈回路链接反对P-TEFb / Cdk9和组蛋白H2B泛素化的功能以调节裂变酵母的转录本延伸。

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摘要

Transcript elongation by RNA polymerase II (RNAPII) is accompanied by conserved patterns of histone modification. Whereas histone modifications have established roles in transcription initiation, their functions during elongation are not understood. Mono-ubiquitylation of histone H2B (H2Bub1) plays a key role in coordinating co-transcriptional histone modification by promoting site-specific methylation of histone H3. H2Bub1 also regulates gene expression through an unidentified, methylation-independent mechanism. Here we reveal bidirectional communication between H2Bub1 and Cdk9, the ortholog of metazoan positive transcription elongation factor b (P-TEFb), in the fission yeast Schizosaccharomyces pombe. Chemical and classical genetic analyses indicate that lowering Cdk9 activity or preventing phosphorylation of its substrate, the transcription processivity factor Spt5, reduces H2Bub1 in vivo. Conversely, mutations in the H2Bub1 pathway impair Cdk9 recruitment to chromatin and decrease Spt5 phosphorylation. Moreover, an Spt5 phosphorylation-site mutation, combined with deletion of the histone H3 Lys4 methyltransferase Set1, phenocopies morphologic and growth defects due to H2Bub1 loss, suggesting independent, partially redundant roles for Cdk9 and Set1 downstream of H2Bub1. Surprisingly, mutation of the histone H2B ubiquitin-acceptor residue relaxes the Cdk9 activity requirement in vivo, and cdk9 mutations suppress cell-morphology defects in H2Bub1-deficient strains. Genome-wide analyses by chromatin immunoprecipitation also demonstrate opposing effects of Cdk9 and H2Bub1 on distribution of transcribing RNAPII. Therefore, whereas mutual dependence of H2Bub1 and Spt5 phosphorylation indicates positive feedback, mutual suppression by cdk9 and H2Bub1-pathway mutations suggests antagonistic functions that must be kept in balance to regulate elongation. Loss of H2Bub1 disrupts that balance and leads to deranged gene expression and aberrant cell morphologies, revealing a novel function of a conserved, co-transcriptional histone modification.
机译:RNA聚合酶II(RNAPII)的转录本延伸伴随着保守的组蛋白修饰模式。尽管组蛋白修饰已在转录起始中确立了作用,但其在延伸过程中的功能尚不清楚。组蛋白H2B(H2Bub1)的单泛素化通过促进组蛋白H3的位点特异性甲基化在协调共转录组蛋白修饰中起关键作用。 H2Bub1还通过未知的甲基化独立机制调节基因表达。在这里,我们揭示了裂殖酵母粟酒裂殖酵母H2Bub1和Cdk9,后生子正转录延伸因子b(P-TEFb)的直系同源物之间的双向通讯。化学和经典遗传分析表明,降低Cdk9活性或防止其底物磷酸化合成因子Spt5磷酸化可在体内降低H2Bub1。相反,H2Bub1途径中的突变会损害Cdk9募集到染色质并降低Spt5磷酸化。此外,Spt5磷酸化位点突变,加上组蛋白H3 Lys4甲基转移酶Set1的缺失,表型和H2Bub1丢失造成的生长缺陷,表明Cdk9和H2Bub1下游的Set1具有独立的,部分冗余的作用。令人惊讶的是,组蛋白H2B泛素受体残基的突变使体内的Cdk9活性要求放松,而cdk9突变抑制了H2Bub1缺陷菌株中的细胞形态缺陷。通过染色质免疫沉淀的全基因组分析还表明Cdk9和H2Bub1对转录RNAPII分布的相反作用。因此,尽管H2Bub1和Spt5磷酸化的相互依赖性表明存在正反馈,但cdk9和H2Bub1途径突变的相互抑制表明必须保持平衡的拮抗功能来调节伸长。 H2Bub1的丢失破坏了这种平衡,并导致基因表达紊乱和细胞形态异常,揭示了保守的共转录组蛋白修饰的新功能。

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