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Transcription-Coupled Replacement of Histones:Degradation or Recycling? 被引量:1

Transcription-Coupled Replacement of Histones:Degradation or Recycling?
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摘要 Histone modifications are proposed to constitute a "histone code" for epigenetic regulation of gene expression. However, recent studies demonstrate that histones have to be disassembled from chromatin during transcription. Recent evidence, though not conclusive, suggests that histories might be degradable after being removed from chromatin during transcription. Degradation of overexpressed excessive histones, instead of native histones, has been shown to be dependent on proteasomes and ubiquitination. Since the 26S proteasome usually recognizes polyubiquitinated substrates, it is critical to demonstrate whether degradation of histones is mediated by polyubiquitination. Unexpectedly, there is almost no evidence that any ubiquitin ligase can promote polyubiquitination-dependent degradation of constitutive histones. Meanwhile, acetylation and phosphorylation are also associated with histone degradation. This review attempts to summarize the current knowledge on the transcription-coupled degradation of histones and its regulation by posttranslational protein modifications. Histone modifications are proposed to constitute a "histone code" for epigenetic regulation of gene expression. However, recent studies demonstrate that histones have to be disassembled from chromatin during transcription. Recent evidence, though not conclusive, suggests that histories might be degradable after being removed from chromatin during transcription. Degradation of overexpressed excessive histones, instead of native histones, has been shown to be dependent on proteasomes and ubiquitination. Since the 26S proteasome usually recognizes polyubiquitinated substrates, it is critical to demonstrate whether degradation of histones is mediated by polyubiquitination. Unexpectedly, there is almost no evidence that any ubiquitin ligase can promote polyubiquitination-dependent degradation of constitutive histones. Meanwhile, acetylation and phosphorylation are also associated with histone degradation. This review attempts to summarize the current knowledge on the transcription-coupled degradation of histones and its regulation by posttranslational protein modifications.
出处 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2012年第11期575-580,共6页 遗传学报(英文版)
基金 supported by grants from the Ministry of Science and Technology of China (No.2012CB910300) the National Natural Science Foundation of China(No.30525033) the Fundamental Research Funds for the Central Universities of China to X.-B.O
关键词 Histone degradation Ubiquitin PROTEASOME UBIQUITINATION ACETYLATION Phosphorytation Gene activation TRANSCRIPTION Histone degradation Ubiquitin Proteasome Ubiquitination Acetylation Phosphorytation Gene activation Transcription
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