Vinit G. Karur, Ph.D.
Affiliations: | 2006 | The University of Maine, Orono, ME, United States |
Area:
Molecular Biology, Biochemistry, Microbiology BiologyGoogle:
"Vinit Karur"Parents
Sign in to add mentorDon Wojchowski | grad student | 2006 | University of Maine | |
(Lyn kinase promotes erythroblast expansion, and late-stage development.) |
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Publications
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Agosti V, Karur V, Sathyanarayana P, et al. (2009) A KIT juxtamembrane PY567 -directed pathway provides nonredundant signals for erythroid progenitor cell development and stress erythropoiesis. Experimental Hematology. 37: 159-71 |
Bogacheva O, Bogachev O, Menon M, et al. (2008) DYRK3 dual-specificity kinase attenuates erythropoiesis during anemia. The Journal of Biological Chemistry. 283: 36665-75 |
Karur VG, Lowell CA, Besmer P, et al. (2006) Lyn kinase promotes erythroblast expansion and late-stage development. Blood. 108: 1524-32 |
Wojchowski DM, Menon MP, Sathyanarayana P, et al. (2006) Erythropoietin-dependent erythropoiesis: New insights and questions. Blood Cells, Molecules & Diseases. 36: 232-8 |
Menon MP, Karur V, Bogacheva O, et al. (2006) Signals for stress erythropoiesis are integrated via an erythropoietin receptor-phosphotyrosine-343-Stat5 axis. The Journal of Clinical Investigation. 116: 683-94 |
Bogacheva O, Bogachev O, Menon M, et al. (2005) Dyrk-3 Kinase Is an Erythroid Cell-Intrinsic Attenuator of Stress Erythropoiesis. Blood. 106: 566-566 |
Menon MP, Cuetara B, Houde E, et al. (2005) The Minimal Epo Receptor Allele, EpoR-H, Regulates ERK1,2, (But Not JNKs or p70S6K), and Induces Pim-1, SOCS3 and Oncostatin-M (But Not BcL-XL) in Primary Erythroblasts. Blood. 106: 3559-3559 |
Li K, Karur V, Vincent B, et al. (2004) Kit PY567- Directed Signals Are Important for Efficient Erythroid Progenitor Cell Proliferation and Survival, and Are Attenuated by Kit PY569. Blood. 104: 2168-2168 |
Karur V, Vincent B, Lowell C, et al. (2004) Lyn Kinase Supports Primary Erythroid Progenitor Cell Development. Blood. 104: 1622-1622 |
Wojchowski DM, Menon M, Karur V, et al. (2004) Core Epo Receptor Signaling Circuits in Adult Bone Marrow-Derived Primary Pro-Erythroblasts. Blood. 104: 1621-1621 |