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Discovery of a chemical probe for the L3MBTL3 methyllysine reader domain

  作者 JAMES LINDSEY I; BARSYTELOVEJOY DALIA; ZHONG NAN; KRICHEVSKY LIUBOV; KORBOUKH VICTORIA K; HEROLD J MARTIN; MACNEVIN CHRISTOPHER J; NORRIS JACQUELINE L; SAGUM CARI A; TEMPEL WOLFRAM; MARCON EDYTA; GUO HONGBO; GAO CEN; HUANG XIPING; DUAN SHILI; EMILI ANDREW; GREENBLATT JACK F; KIREEV DMITRI B; JIN JIAN; JANZEN WILLIAM P; BROWN PETER J; BEDFORD MARK T; ARROWSMITH CHERYL H; FRYE STEPHEN V  
  选自 期刊  NATURE CHEMICAL BIOLOGY;  卷期  2013年9-3;  页码  184-191  
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[摘要]We describe the discovery of UNC1215, a potent and selective chemical probe for the methyllysine (Kme) reading function of L3MBTL3, a member of the malignant brain tumor (MBT) family of chromatin-interacting transcriptional repressors. UNC1215 binds L3MBTL3 with a K-d of 120 nM, competitively displacing mono- or dimethyllysine-containing peptides, and is greater than 50-fold more potent toward L3MBTL3 than other members of the MBT family while also demonstrating selectivity against more than 200 other reader domains examined. X-ray crystallography identified a unique 2:2 polyvalent mode of interaction between UNC1215 and L3MBTL3. In cells, UNC1215 is nontoxic and directly binds L3MBTL3 via the Kme-binding pocket of the MBT domains. UNC1215 increases the cellular mobility of GFP-L3MBTL3 fusion proteins, and point mutants that disrupt the Kme-binding function of GFP-L3MBTL3 phenocopy the effects of UNC1215 on localization. Finally, UNC1215 was used to reveal a new Kme-dependent interaction of L3MBTL3 with BCLAF1, a protein implicated in DNA damage repair and apoptosis.

 
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