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  1. 1.   Autoinhibition of ubiquitin-specific protease 8: insights into domain interactions and mechanisms of regulation
  2. Caba, Cody; Black, Megan; Liu, Yujue; DaDalt, Ashley A; Mallare, Josh; Fan,Lixin; Harding, Rachel J; Wang, Yunxin; Vacratsis, Panayiotis O; Huang, Rui; Zhuang, Zhihao; Tong, Yufeng
  3. The Journal of Biological Chemistry. 2024, Aug 28; 107727.
  1. 2.   RASopathy mutations provide functional insight into the BRAF cysteine-rich domain and reveal the importance of autoinhibition in BRAF regulation
  2. Smith,Russell; Terrell,Elizabeth; Insinna, Christine; Agamasu, Constance; Wagner, Morgan E; Ritt,Daniel; Stauffer,Jimmy; Stephen,Andy; Morrison,Deborah
  3. Molecular Cell. 2022, Nov 17; 82(22): 4262-4276.
  1. 3.   The mechanism of activation of MEK1 by B-Raf and KSR1
  2. Maloney,Ryan; Zhang,Mingzhen; Liu,Yonglan; Jang,Hyunbum; Nussinov,Ruth
  3. Cellular and molecular life sciences : CMLS. 2022, May 04; 79(5): 281.
  1. 4.   Nucleotide-Specific Autoinhibition of Full-Length K-Ras4B Identified by Extensive Conformational Sampling
  2. Dudas, Balint; Merzel, Franci; Jang,Hyunbum; Nussinov,Ruth; Perahia, David; Balog, Erika
  3. Frontiers in molecular biosciences. 2020, JUL 10; 7: 145.
  1. 5.   Autoinhibition can identify rare driver mutations and advise pharmacology
  2. Nussinov,Ruth; Tsai,Chung-Jung; Jang,Hyunbum
  3. FASEB journal : official publication of the Federation of American Societies for Experimental Biology. 2020, Jan; 34(1): 16-29.
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