Skip NavigationSkip to Content

NCI at Frederick Scientific Publications Advanced Search

Search
  1. NCI-F Publications

Search
  1. Year Published:

Your search returned 58 results.
User Information
Export Records
  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.   SHP2 clinical phenotype, cancer, or RASopathies, can be predicted by mutant conformational propensities
  2. Liu,Yonglan; Zhang,Wengang; Jang,Hyunbum; Nussinov,Ruth
  3. Cellular and Molecular Life Sciences : CMLS. 2023, Dec 12; 81(1): 5.
  1. 3.   Selenium Ameliorates Acetaminophen-Induced Oxidative Stress via MAPK and Nrf2 Pathways in Mice
  2. Indumathi, Mylanayakanahosahalli Chandrashekar; Swetha, Kamatam; Kandahalli Venkataranga Nayaka,Abhilasha; Siddappa, Shiva; Kumar, Shivamadhaiah Manjula; Prasad, Govinda Keerthi; Chen, Chu-Huang; Marathe, Gopal Kedihithlu
  3. Biological Trace Element Research. 2023, Sep 13;
  1. 4.   Mapping the KRAS Proteoform Landscape in Colorectal Cancer Identifies Truncated KRAS4B that Decreases MAPK Signaling
  2. Adams, Lauren M; Dehart,Caroline; Drown, Bryon S; Anderson, Lissa C; Bocik,William; Boja, Emily S; Hiltke, Tara M; Hendrickson, Christopher L; Rodriguez, Henry; Caldwell, Michael; Vafabakhsh, Reza; Kelleher, Neil L
  3. The Journal of Biological Chemistry. 2022, Dec 02; 299(1): 102768.
  1. 5.   The structural basis of BCR-ABL recruitment of GRB2 in chronic myelogenous leukemia
  2. Liu,Yonglan; Jang,Hyunbum; Zhang,Mingzhen; Tsai,Chung-Jung; Maloney,Ryan; Nussinov,Ruth
  3. Biophysical Journal. 2022, May 31;
  1. 6.   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. 7.   The mechanism of Raf activation through dimerization
  2. Zhang,Mingzhen; Maloney,Ryan; Jang,Hyunbum; Nussinov,Ruth
  3. Chemical Science. 2021, Dec 08; 12(47): 15609-15619.
  1. 8.   New Therapeutic Opportunities for the Treatment of Squamous Cell Carcinomas: A Focus on Novel Driver Kinases
  2. Bensen, Ryan; Brognard,John
  3. International Journal of Molecular Sciences. 2021, Mar; 22(6):
  1. 9.   The quaternary assembly of KRas4B with Raf-1 at the membrane
  2. Jang,Hyunbum; Zhang,Mingzhen; Nussinov,Ruth
  3. Computational and Structural Biotechnology Journal. 2020, Mar 25; 18: 737-748.
  1. 10.   Biochemical and structural analyses reveal that the tumor suppressor neurofibromin (NF1) forms a high-affinity dimer
  2. Sherekar,Mukul; Han, Sae-Won; Ghirlando, Rodolfo; Messing,Simon; Drew,Matt; Rabara,Dana; Waybright,Tim; Juneja, Puneet; O'Neill, Hugh; Stanley, Christopher B; Bhowmik, Debsindhu; Ramanathan, Arvind; Subramaniam,Sriram; Nissley,Dwight; Gillette,Bill; McCormick, Frank; Esposito,Dom
  3. The Journal of biological chemistry. 2020, JAN 24; 295(4): 1105-1119.
  1. 11.   MAP kinase and autophagy pathways cooperate to maintain RAS mutant cancer cell survival
  2. Lee, Chih-Shia; Lee, Liam C.; Yuan, Tina L.; Chakka, Sirisha; Fellmann, Christof; Lowe, Scott W.; Caplen, Natasha J.; McCormick, Frank; Luo, Ji
  3. Proceedings of the National Academy of Sciences of the United States of America. 2019, Mar 5; 116(10): 4508-4517.
  1. 12.   Quantitative biophysical analysis defines key components modulating recruitment of the GTPase KRAS to the plasma membrane
  2. Bindu, Lakshman; Messing, Simon; Schmid, Eva M.; Clogston, Jeffrey; Gillette, Bill; Esposito, Dom; Kessing, Bailey; Fletcher, Daniel A.; Nissley, Dwight; McCormick, Frank; Stephen, Andy; Jean-Francois, Frantz
  3. JOURNAL OF BIOLOGICAL CHEMISTRY. 2019, Feb 8; 294(6): 2193-2207.
  1. 13.   MyD88 Regulates LPS-induced NF-?B/MAPK Cytokines and Promotes Inflammation and Malignancy in Colorectal Cancer Cells
  2. Zhu, Guangwei; Cheng, Zhibin; Lin, Chunlin; Hoffman, Robert M; Huang, Yongjian; Singh,Shree Ram; Zheng, Wei; Yang, Shugang; Ye, Jianxin
  3. Cancer genomics & proteomics. 2019, Nov-Dec; 16(6): 409-419.
  1. 14.   HMGN1 and R848 Synergistically Activate Dendritic Cells Using Multiple Signaling Pathways
  2. Alam, Md Masud; Yang, De; Trivett, Anna; Meyer, Thomas; Oppenheim, Joost
  3. Frontiers in immunology. 2018, Dec 18; 9: 2982.
  1. 15.   Proceedings of the fifth international RASopathies symposium: When development and cancer intersect
  2. Rauen, Katherine A.; Schoyer, Lisa; Schill, Lisa; Stronach, Beth; Albeck, John; Andresen, Brage S.; Cave, Helene; Ellis, Michelle; Fruchtman, Steven M.; Gelb, Bruce D.; Gibson, Christopher C.; Gripp, Karen; Hefner, Erin; Huang, William Y. C.; Itkin, Maxim; Kerr, Bronwyn; Linardic, Corinne M.; McMahon, Martin; Oberlander, Beverly; Perlstein, Ethan; Ratner, Nancy; Rogers, Leslie; Schenck, Annette; Shankar, Suma; Shvartsman, Stanislav; Stevenson, David A.; Stites, Edward C.; Stork, Philip J. S.; Sun, Cheng; Therrien, Marc; Ullian, Erik M.; Widemann, Brigitte C.; Yeh, Erika; Zampino, Giuseppe; Zenker, Martin; Timmer, William; McCormick, Frank
  3. AMERICAN JOURNAL OF MEDICAL GENETICS PART A. 2018, Dec; 176(12): 2924-2929.
  1. 16.   Crosstalk between PKC alpha and PI3K/AKT Signaling Is Tumor Suppressive in the Endometrium
  2. Hsu, Alice; Lum, Michelle A.; Shim, Kang-Sup; Frederick, Peter J.; Morrison, Carl D.; Chen, Baojiang; Lele, Subodh M.; Sheinin, Yuri M.; Daikoku, Takiko; Dey, Sudhansu K.; Leone, Gustavo; Black, Adrian R.; Black, Jennifer D.
  3. CELL REPORTS. 2018, Jul 17; 24(3): 655-669.
  1. 17.   Raf-1 Cysteine-Rich Domain Increases the Affinity of K-Ras/Raf at the Membrane, Promoting MAPK Signaling
  2. Li, Shuai; Jang, Hyunbum; Zhang, Jian; Nussinov, Ruth
  3. Structure . 2018, Mar 6; 26(3): 513-+.
  1. 18.   RAS Proteins and Their Regulators in Human Disease
  2. Simanshu, Dhirendra; Nissley, Dwight; McCormick, Frank
  3. Cell. 2017, Jun 29; 170(1): 17-33.
  1. 19.   NADPH oxidase 1 supports proliferation of colon cancer cells by modulating reactive oxygen species-dependent signal transduction
  2. Juhasz, Agnes; Markel, Susan; Gaur, Shikha; Liu, Han; Lu, Jiamo; Jiang, Guojian; Wu, Xiwei; Antony, Smitha; Wu, Yongzhong; Melillo, Giovanni; Meitzler, Jennifer L; Haines, Diana; Butcher, Donna; Roy, Krishnendu; Doroshow, James H
  3. Journal of Biological Chemistry. 2017, May 12; 292(19): 7866-7887.
  1. 20.   Negative regulation of human U6 snRNA promoter by p38 kinase through Oct-1
  2. Lin, B. R.; Natarajan, V.
  3. Gene. 2012, Apr; 497(2): 200-207.
  1. 21.   Toll-Like Receptor 9 Is Required for Opioid-Induced Microglia Apoptosis
  2. He, L.; Li, H.; Chen, L.; Miao, J. Y.; Jiang, Y. L.; Zhang, Y.; Xiao, Z. X.; Hanley, G.; Li, Y.; Zhang, X. M.; LeSage, G.; Peng, Y.; Yin, D. L.
  3. Plos One. 2011, Apr; 6(4): 10.
  1. 22.   Genetic Inactivation of ERK1 and ERK2 in Chondrocytes Promotes Bone Growth and Enlarges the Spinal Canal
  2. Sebastian, A.; Matsushita, T.; Kawanami, A.; Mackem, S.; Landreth, G. E.; Murakami, S.
  3. Journal of Orthopaedic Research. 2011, Mar; 29(3): 375-379.
  1. 23.   Dendritic Cells from Humans with Hypomorphic Mutations in IKBKG/NEMO Have Impaired Mitogen-Activated Protein Kinase Activity
  2. Ma, C. A.; Wang, H. Y.; Temmerman, S.; Zhao, Y. G.; Wu, L. M.; Hornung, R. L.; Wara, D.; Jain, A.
  3. Human Mutation. 2011, Mar; 32(3): 318-324.
  1. 24.   Oligomer procyanidins from grape seeds induce a paraptosis-like programmed cell death in human glioblastoma U-87 cells
  2. Zhang, F. J.; Yang, J. Y.; Mou, Y. H.; Sun, B. S.; Wang, J. M.; Wu, C. F.
  3. Pharmaceutical Biology. 2010, Aug; 48(8): 883-890.
  1. 25.   Caspase-dependent cleavage disrupts the ERK cascade scaffolding function of KSR1
  2. McKay, M. M.; Morrison, D. K.
  3. Journal of Biological Chemistry. 2007, Sep; 282(36): 26225-26234.
NCI at Frederick

You are leaving a government website.

This external link provides additional information that is consistent with the intended purpose of this site. The government cannot attest to the accuracy of a non-federal site.

Linking to a non-federal site does not constitute an endorsement by this institution or any of its employees of the sponsors or the information and products presented on the site. You will be subject to the destination site's privacy policy when you follow the link.

ContinueCancel