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  1. 1.   Disruption of Ca2+/calmodulin:KSR1 interaction lowers ERK activation
  2. Thines, Louise; Jang,Hyunbum; Li, Zhigang; Sayedyahossein, Samar; Maloney, Ryan; Nussinov,Ruth; Sacks, David B
  3. Protein Science : a publication of the Protein Society. 2024, May; 33(5): e4982.
  1. 2.   The dynamic nature of the K-Ras/calmodulin complex can be altered by oncogenic mutations
  2. Abdelkarim, Hazem; Leschinsky, Nicholas; Jang, Hyunbum; Banerjee, Avik; Nussinov,Ruth; Gaponenko, Vadim
  3. Current Opinion in Structural Biology. 2021, Dec; 71: 164-170.
  1. 3.   A Covalent Calmodulin Inhibitor as a Tool to Study Cellular Mechanisms of K-Ras-Driven Stemness
  2. Okutachi, Sunday; Manoharan, Ganesh Babu; Kiriazis, Alexandros; Laurini, Christina; Catillon, Marie; McCormick, Frank; Yli-Kauhaluoma, Jari; Abankwa, Daniel
  3. Frontiers in cell and developmental biology. 2021, Jul 8; 9: 665673.
  1. 4.   Ras assemblies and signaling at the membrane
  2. Nussinov,Ruth; Tsai,Chung-Jung; Jang,Hyunbum
  3. Current opinion in structural biology. 2020, JUN; 62: 140-148.
  1. 5.   The mechanism of PI3K activation at the atomic level
  2. Zhang,Mingzhen; Jang,Hyunbum; Nussinov,Ruth
  3. Chemical science. 2019, Mar 28; 10(12): 3671-3680.
  1. 6.   Is Nanoclustering essential for all oncogenic KRas pathways? Can it explain why wild-type KRas can inhibit its oncogenic variant?
  2. Nussinov,Ruth; Tsai,Chung-Jung; Jang,Hyunbum
  3. Seminars in Cancer Biology. 2019, FEB; 54: 114-120.
  1. 7.   Intrinsic protein disorder in oncogenic KRAS signaling
  2. Nussinov, Ruth; Jang, Hyunbum; Tsai, Chung-Jung; Liao, Tsung-Jen; Li, Shuai; Fushman, David; Zhang, Jian
  3. Cellular and Molecular Life Sciences . 2017, Sep; 74(17): 3245-3261.
  1. 8.   Flexible-Body Motions of Calmodulin and the Farnesylated Hypervariable Region Yield a High-Affinity Interaction Enabling K-Ras4B Membrane Extraction.
  2. Jang, Hyunbum; Banerjee, Avik; Chavan, Tanmay; Gaponenko, Vadim; Nussinov, Ruth
  3. The Journal of biological chemistry. 2017, Jul 28; 292(30): 12544-12559.
  1. 9.   The Hypervariable Region of K-Ras4B Is Responsible for Its Specific Interactions with Calmodulin
  2. Abraham, S. J.; Nolet, R. P.; Calvert, R. J.; Anderson, L. M.; Gaponenko, V.
  3. Biochemistry. 2009 48(32): 7575-7583.
  1. 10.   Gene expression dose-response changes in microarrays after exposure of human peripheral lung epithelial cells to nickel(II)
  2. Cheng, R. Y. S.; Zhao, A. L.; Alvord, W. G.; Powell, D. A.; Bare, R. M.; Masuda, A.; Takahashi, T.; Anderson, L. M.; Kasprzak, K. S.
  3. Toxicology and Applied Pharmacology. 2003 191(1): 22-39.
  1. 11.   CKA, a novel multidomain protein, regulates the JUN N-terminal kinase signal transduction pathway in Drosophila
  2. Chen, H. W.; Marinissen, M. J.; Oh, S. W.; Chen, X.; Melnick, M.; Perrimon, N.; Gutkind, J. S.; Hou, S. X.
  3. Molecular and Cellular Biology. 2002 22(6): 1792-1803.
  1. 12.   Building blocks, hinge-bending motions and protein topology
  2. Sinha, N.; Tsai, C. J.; Nussinov, R.
  3. Journal of Biomolecular Structure & Dynamics. 2001 19(3): 369-380.
  1. 13.   Death-associated protein kinase 2 is a new calcium/calmodulin-dependent protein kinase that signals apoptosis through its catalytic activity
  2. Kawai, T.; Nomura, F.; Hoshino, K.; Copeland, N. G.; Gilbert, D. J.; Jenkins, N. A.; Akira, S.
  3. Oncogene. 1999 18(23): 3471-3480.
  1. 14.   Spectral variants of green fluorescent protein
  2. Palm, G. J.; Wlodawer, A.
  3. Green Fluorescent Protein. 1999 302: 378-394.
  1. 15.   Flexible Docking Allowing Induced Fit in Proteins - Insights From an Open to Closed Conformational Isomers
  2. Sandak, B.; Wolfson, H. J.; Nussinov, R.
  3. Proteins-Structure Function and Genetics. 1998 32(2): 159-174.
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