EZH2 Generates a Methyl Degron that Is Recognized by the DCAF1/DDB1/CUL4 E3 Ubiquitin Ligase Complex
  • Lee, Ji Min
  • Lee, Jason S.
  • Kim, Hyunkyung
  • Kim, Kyeongkyu
  • Park, Hyejin
  • ... Kim, Keun Il
  • 외 12명
Citations

WEB OF SCIENCE

206
Citations

SCOPUS

221

초록

Ubiquitination plays a major role in protein degradation. Although phosphorylation-dependent ubiquitination is well known for the regulation of protein stability, methylation-dependent ubiquitination machinery has not been characterized. Here, we provide evidence that methylation-dependent ubiquitination is carried out by damage-specific DNA binding protein 1 (DDB1)/cullin4 (CUL4) E3 ubiquitin ligase complex and a DDB1-CUL4-associated factor 1 (DCAF1) adaptor, which recognizes monomethylated substrates. Molecular modeling and binding affinity studies reveal that the putative chromo domain of DCAF1 directly recognizes monomethylated substrates, whereas critical binding pocket mutations of the DCAF1 chromo domain ablated the binding from the monomethylated substrates. Further, we discovered that enhancer of zeste homolog 2 (EZH2) methyltransferase has distinct substrate specificities for histone H3K27 and nonhistones exemplified by an orphan nuclear receptor, ROR alpha. We propose that EZH2-DCAF1/DDB1/CUL4 represents a previously unrecognized methylation-dependent ubiquitination machinery specifically recognizing "methyl degron"; through this, nonhistone protein stability can be dynamically regulated in a methylation-dependent manner.

키워드

RECEPTOR ROR-ALPHAORPHAN NUCLEAR RECEPTORSHISTONE H3CHROMO-DOMAINPROSTATE-CANCERDNA-DAMAGEPROTEINSCELLSHP1DIFFERENTIATION
제목
EZH2 Generates a Methyl Degron that Is Recognized by the DCAF1/DDB1/CUL4 E3 Ubiquitin Ligase Complex
저자
Lee, Ji MinLee, Jason S.Kim, HyunkyungKim, KyeongkyuPark, HyejinKim, Ji-YoungLee, Seung HoonKim, Ik SooKim, JoomyungLee, MinkyoungChung, Chin HaSeo, Sang-BeomYoon, Jong-BokKo, EunyoungNoh, Dong-YoungKim, Keun IlKim, Kyeong KyuBaek, Sung Hee
DOI
10.1016/j.molcel.2012.09.004
발행일
2012-11
유형
Article
저널명
Molecular Cell
48
4
페이지
572 ~ 586