Jiqing Sai, Ph.D.

Affiliations: 
Vanderbilt University, Nashville, TN 
Area:
Biological clocks
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"Jiqing Sai"
Mean distance: 17.52 (cluster 28)
 
SNBCP

Parents

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Carl Hirschie Johnson grad student 2000 Vanderbilt
 (The roles of calcium ion fluxes in plant circadian clocks and plant photoperiodism.)
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Publications

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Sarkar D, Olejniczak ET, Phan J, et al. (2020) Discovery of Sulfonamide-Derived Agonists of SOS1-Mediated Nucleotide Exchange on RAS Using Fragment-Based Methods. Journal of Medicinal Chemistry
Tian J, Teuscher K, Aho ER, et al. (2019) Discovery and Structure-Based Optimization of Potent and Selective WD repeat domain 5 (WDR5) Inhibitors Containing a Dihydroisoquinolinone Bicyclic Core. Journal of Medicinal Chemistry
Macdonald JD, Chacon Simon S, Han C, et al. (2019) Discovery and Optimization of Salicylic Acid-Derived Sulfonamide Inhibitors of the WD Repeat-Containing Protein 5 (WDR5)-MYC Protein-Protein Interaction. Journal of Medicinal Chemistry
Kessler D, Gmachl M, Mantoulidis A, et al. (2019) Drugging an undruggable pocket on KRAS. Proceedings of the National Academy of Sciences of the United States of America
Akan DT, Howes JE, Sai J, et al. (2019) Small molecule SOS1 agonists modulate MAPK and PI3K signaling via independent cellular responses. Acs Chemical Biology
Saxon JA, Sherrill TP, Polosukhin VV, et al. (2016) Epithelial NF-κB signaling promotes EGFR-driven lung carcinogenesis via macrophage recruitment. Oncoimmunology. 5: e1168549
Sai J, Rogers M, Hockemeyer K, et al. (2016) Study of Chemotaxis and Cell-Cell Interactions in Cancer with Microfluidic Devices. Methods in Enzymology. 570: 19-45
Lavender N, Yang J, Sai J, et al. (2016) Abstract 1410: PI3K inhibitors reduce breast cancer tumor growth and enhance anti-tumor leukocyte activity Cancer Research. 76: 1410-1410
Lavender N, Sai J, Yang J, et al. (2015) Abstract 422: The role of CCL2 in the breast cancer tumor microenvironment and metastasis Cancer Research. 75: 422-422
Raman D, Sai J, Hawkins O, et al. (2014) Adaptor protein2 (AP2) orchestrates CXCR2-mediated cell migration Traffic. 15: 451-469
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