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  1. 1.   Anionic Lipids Impact RAS-Binding Site Accessibility and Membrane Binding Affinity of CRAF RBD-CRD
  2. Travers, Timothy; López, Cesar A; Agamasu, Constance; Hettige, Jeevapani J; Messing,Simon; García, Angel E; Stephen, Andrew G; Gnanakaran, S
  3. Biophysical journal. 2020, AUG 4; 119(3): 525-538.
  1. 2.   Structural Insights into the SPRED1-Neurofibromin-KRAS Complex and Disruption of SPRED1-Neurofibromin Interaction by Oncogenic EGFR
  2. Yan,Wupeng; Markegard, Evan; Dharmaiah, Srisathiyanarayanan; Urisman, Anatoly; Drew, Matthew; Esposito,Dom; Scheffzek, Klaus; Nissley,Dwight; McCormick, Frank; Simanshu,Dhirendra
  3. Cell reports. 2020, Jul 21; 32(3): 107909.
  1. 3.   Membrane interactions of the globular domain and the hypervariable region of KRAS4b define its unique diffusion behavior
  2. Goswami,Debanjan; Chen,De; Yang, Yue; Gudla, Prabhakar R; Columbus,John; Worthy,Karen; Rigby, Megan; Wheeler,Maddie; Mukhopadhyay,Suman; Powell,Katie; Burgan, William; Wall,Vanessa; Esposito,Dom; Simanshu,Dhirendra; Lightstone, Felice C; Nissley,Dwight; McCormick, Frank; Turbyville,Tommy
  3. eLife. 2020, Jan 20; 9
  1. 4.   Membrane curvature sensing of the lipid-anchored K-Ras small GTPase
  2. Liang, Hong; Mu, Huanwen; Jean-Francois,Frantz; Bindu,Lakshman; Sarkar-Banerjee, Suparna; Zhuang, Yinyin; Zeng, Yongpeng; Gao, Weibo; Zaske, Ana Maria; Nissley,Dwight; Gorfe, Alemayehu A; Zhao, Wenting; Zhou, Yong
  3. Life science alliance. 2019, Aug; 2(4): pii: e201900343.
  1. 5.   Combination therapy of tumor-targeting Salmonella typhimurium A1-R and oral recombinant methioninase regresses a BRAF-V600E-negative melanoma
  2. Kawaguchi, Kei; Higuchi, Takashi; Li, Shukuan; Han, Qinghong; Tan, Yuying; Igarashi, Kentaro; Zhao, Ming; Miyake, Kentaro; Kiyuna, Tasuku; Miyake, Masuyo; Ohshiro, Hiromichi; Sugisawa, Norihiko; Zhang, Zhiying; Razmjooei, Sahar; Wangsiricharoen, Sintawat; Chmielowski, Bartosz; Nelson, Scott D; Russell, Tara A; Dry, Sarah M; Li, Yunfeng; Eckardt, Mark A; Singh, Arun S; Singh, Shree Ram; Eilber, Fritz C; Unno, Michiaki; Hoffman, Robert M
  3. Biochemical and Biophysical Research Communications. 2018, Sep 18; 503(4): 3086-3092.
  1. 6.   Grb10 and active Raf-1 kinase promote bad-dependent cell survival
  2. Kebache, S.; Ash, J.; Annis, M. G.; Hagan, J.; Huber, M.; Hassard, J.; Stewart, C. L.; Whiteway, M.; Nantel, A.
  3. Journal of Biological Chemistry. 2007, Jul; 282(30): 21873-21883.
  1. 7.   Integrating signals from RTKs to ERK/MAPK
  2. McKay, M. M.; Morrison, D. K.
  3. Oncogene. 2007, May; 26(22): 3113-3121.
  1. 8.   CK2 is a component of the KSR1 scaffold complex that contributes to Raf kinase activation
  2. Ritt, D. A.; Zhou, M.; Conrads, T. P.; Veenstra, T. D.; Copeland, T. D.; Morrison, D. K.
  3. Current Biology. 2007, Jan; 17(2): 179-184.
  1. 9.   A microtiter plate fraction collector for the sequencing of radioactive phosphorylated peptides
  2. Guszczynski, T.; Specht, S. I.; Copeland, T. D.
  3. Analytical Biochemistry. 2006, Sep; 356(1): 151-153.
  1. 10.   Nuclear accumulation of epidermal growth factor receptor and acceleration of G1/S stage by Epstein-Barr-encoded oncoprotein latent membrane protein 1
  2. Tao, Y. G.; Xing, S.; Deng, X. Y.; Xie, D. X.; Lee, L. M.; Liu, Y. P.; Wei, L.; Li, L. L.; Lin, D.; Qiao, W.; Gong, J. P.; Ya, C.
  3. Experimental Cell Research. 2005, FEB 15; 303(2): 240-251.
  1. 11.   Regulation of raf-1 by direct feedback phosphorylation
  2. Dougherty, M. K.; Muller, J.; Ritt, D. A.; Zhou, M.; Zhou, X. Z.; Copeland, T. D.; Conrads, T. P.; Veenstra, T. D.; Lu, K. P.; Morrison, D. K.
  3. Molecular Cell. 2005, JAN 21; 17(2): 215-224.
  1. 12.   Enhanced tumor cell radiosensitivity and abrogation of G(2) and S phase arrest by the Hsp90 inhibitor 17-(dimethylaminoethylamino)-17-demethoxygeldanamycin
  2. Bull, E. E. A.; Dote, H.; Brady, K. J.; Burgan, W. E.; Carter, D. J.; Cerra, M. A.; Oswald, K. A.; Hollingshead, M. G.; Camphausen, K.; Tofilon, P. J.
  3. Clinical Cancer Research. 2004, DEC 1; 10(23): 8077-8084.
  1. 13.   Inhibition of lysophosphatidic acid acyltransferase disrupts proliferative and survival signals in normal cells and induces apoptosis of tumor cells
  2. Coon, M.; Ball, A.; Pound, J.; Ap, S.; Hollenback, D.; White, T.; Tulinsky, J.; Bonham, L.; Morrison, D. K.; Finney, R.; Singer, J. W.
  3. Molecular Cancer Therapeutics. 2003 2(10): 1067-1078.
  1. 14.   BCL-2 and BCL-X-L restrict lineage choice during hematopoietic differentiation
  2. Haughn, L.; Hawley, R. G.; Morrison, D. K.; von Boehmer, H.; Hockenbery, D. M.
  3. Journal of Biological Chemistry. 2003 278(27): 25158-25165.
  1. 15.   Protein 14-3-3 sigma interacts with and favors cytoplasmic subcellular localization of the glucocorticoid receptor, acting as a negative regulator of the glucocorticoid signaling pathway
  2. Kino, T.; Souvatzoglou, E.; De Martino, M. U.; Tsopanomihalu, M.; Wan, Y. H.; Chrousos, G. P.
  3. Journal of Biological Chemistry. 2003 278(28): 25651-25656.
  1. 16.   Increased K-ras protein and activity in mouse and human lung epithelial cells at confluence
  2. Kammouni, W.; Ramakrishna, G.; Sithanandam, G.; Smith, G. T.; Fornwald, L. W.; Masuda, A.; Takahashi, T.; Anderson, L. M.
  3. Cell Growth and Differentiation. 2002 13(9): 441-448.
  1. 17.   Solution structure and functional analysis of the cysteine-rich C1 domain of kinase suppressor of Ras (KSR)
  2. Zhou, M.; Horita, D. A.; Waugh, D. S.; Byrd, R. A.; Morrison, D. K.
  3. Journal of Molecular Biology. 2002 315(3): 435-446.
  1. 18.   MEKK1 plays a critical role in activating the transcription factor gene expression in C/EBP-beta-dependent response to IFN- gamma
  2. Roy, S. K.; Hu, J. B.; Meng, Q. J.; Xia, Y.; Shapiro, P. S.; Reddy, S. P. M.; Platanias, L. C.; Lindner, D. J.; Johnson, P. F.; Pritchard, C.; Pages, G.; Pouyssegur, J.; Kalvakolanu, D. V.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2002 99(12): 7945-7950.
  1. 19.   Induction of oocyte maturation by jun-N-terminal kinase (JNK) on the oncogenic ras-p21 pathway is dependent on the raf-MEK signal transduction pathway
  2. Chie, L.; Amar, S.; Kung, H. F.; Lin, M. C. M.; Chen, H.; Chung, D. L.; Adler, V.; Ronai, Z.; Friedman, F. K.; Robinson, R. C.; Kovac, C.; Brandt-Rauf, P. W.; Yamaizumi, Z.; Michl, J.; Pincus, M. R.
  3. Cancer Chemotherapy and Pharmacology. 2000 45(6): 441-449.
  1. 20.   Growth factor-independent proliferation of erythroid cells infected with friend spleen focus-forming virus is protein kinase C dependent but does not require Ras-GTP
  2. Muszynski, K. W.; Thompson, D.; Hanson, C.; Lyons, R.; Spadaccini, A.; Ruscetti, S. K.
  3. Journal of Virology. 2000 74(18): 8444-8451.
  1. 21.   Ki-ras and the characteristics of mouse lung tumors
  2. Ramakrishna, G. T.; Bialkowska, A.; Perella, C.; Birely, L.; Fornwald, L. W.; Diwan, B. A.; Shiao, Y. H.; Anderson, L. M.
  3. Molecular Carcinogenesis. 2000 28(3): 156-167.
  1. 22.   Cell cycle-related differences in susceptibility of NIH/3T3 cells to ribonucleases
  2. Smith, M. R.; Newton, D. L.; Mikulski, S. M.; Rybak, S. M.
  3. Experimental Cell Research. 1999 247(1): 220-232.
  1. 23.   Autoregulation of the Raf-1 Serine/Threonine Kinase
  2. Cutler, R. E.; Stephens, R. M.; Saracino, M. R.; Morrison, D. K.
  3. Proceedings of the National Academy of Sciences of the United States of America. 1998 95(16): 9214-9219.
  1. 24.   The Immunophilin Fkbp65 Forms an Association With the Serine/Threonine Kinase C-Raf-1
  2. Coss, M. C.; Stephens, R. M.; Morrison, D. K.; Winterstein, D.; Smith, L. M.; Simek, S. L.
  3. Cell Growth and Differentiation. 1998 9(1): 41-48.
  1. 25.   Craf-1 Protein Kinase Is Essential For Mouse Development
  2. Wojnowski, L.; Stancato, L. F.; Zimmer, A. M.; Hahn, H.; Beck, T. W.; Larner, A. C.; Rapp, U. R.; Zimmer, A.
  3. Mechanisms of Development. 1998 76(1-2): 141-149.
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