Kathryn F. Medler

Affiliations: 
Biological Sciences State University of New York, Buffalo, Buffalo, NY, United States 
Area:
Cell Biology, Neuroscience Biology, Physiology Biology, Biochemistry
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"Kathryn Medler"
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Debarghya Dutta Banik grad student SUNY Buffalo (Neurotree)
Yankun Gao grad student 2011-2017 SUNY Buffalo
Debarghya Dutta Banik grad student 2014-2019 SUNY Buffalo (Neurotree)
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Publications

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Ascencio Gutierrez V, Martin LE, Simental Ramos A, et al. (2024) TRPM4 and PLCβ3 contribute to normal behavioral responses to an array of sweeteners and carbohydrates but PLCβ3 is not needed for taste-driven licking for glucose. Chemical Senses
Dutta Banik D, Medler KF. (2023) Defining the role of TRPM4 in broadly responsive taste receptor cells. Frontiers in Cellular Neuroscience. 17: 1148995
Dutta Banik D, Medler KF. (2021) Taste Receptor Signaling. Handbook of Experimental Pharmacology
Dutta Banik D, Benfey ED, Martin LE, et al. (2020) A subset of broadly responsive Type III taste cells contribute to the detection of bitter, sweet and umami stimuli. Plos Genetics. 16: e1008925
Ahart ZC, Martin LE, Kemp BR, et al. (2019) Differential Effects of Diet and Weight on Taste Responses in Diet-Induced Obese Mice. Obesity (Silver Spring, Md.)
Gao Y, Dutta Banik D, Muna MM, et al. (2019) The WT1-BASP1 complex is required to maintain the differentiated state of taste receptor cells. Life Science Alliance. 2
Dutta Banik D, Martin LE, Freichel M, et al. (2018) TRPM4 and TRPM5 are both required for normal signaling in taste receptor cells. Proceedings of the National Academy of Sciences of the United States of America
Marsh LA, Carrera S, Shandilya J, et al. (2017) BASP1 interacts with oestrogen receptor α and modifies the tamoxifen response. Cell Death & Disease. 8: e2771
Shandilya J, Gao Y, Nayak TK, et al. (2016) AP1 transcription factors are required to maintain the peripheral taste system. Cell Death & Disease. 7: e2433
Shandilya J, Medler KF, Roberts SG. (2016) Regulation of AURORA B function by mitotic checkpoint protein MAD2. Cell Cycle (Georgetown, Tex.). 0
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