Sunitha Bollimuntha, Ph.D.
Affiliations: | 2009 | The University of North Dakota, Grand Forks, ND, United States |
Area:
Cell Biology, Neuroscience BiologyGoogle:
"Sunitha Bollimuntha"Mean distance: 42746.4
Parents
Sign in to add mentorBrij B. Singh | grad student | 2009 | University of North Dakota | |
(Activation dependent function of transient receptor potential canonical 3 in neurosecretion.) |
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Publications
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Bollimuntha S, Pani B, Singh BB. (2017) Neurological and Motor Disorders: Neuronal Store-Operated Ca(2+) Signaling: An Overview and Its Function. Advances in Experimental Medicine and Biology. 993: 535-556 |
Pani B, Liu X, Bollimuntha S, et al. (2013) Impairment of TRPC1-STIM1 channel assembly and AQP5 translocation compromise agonist-stimulated fluid secretion in mice lacking caveolin1. Journal of Cell Science. 126: 667-75 |
Pani B, Bollimuntha S, Singh BB. (2012) The TR (i)P to Ca²⁺ signaling just got STIMy: an update on STIM1 activated TRPC channels. Frontiers in Bioscience (Landmark Edition). 17: 805-23 |
Bollimuntha S, Selvaraj S, Singh BB. (2011) Emerging roles of canonical TRP channels in neuronal function. Advances in Experimental Medicine and Biology. 704: 573-93 |
Bollimuntha S, Watt JA, Singh BB. (2007) The Localization And Function Of TRPC3 In Supra Optic Nucleus The Faseb Journal. 21 |
Bollimuntha S, Ebadi M, Singh BB. (2006) TRPC1 protects human SH-SY5Y cells against salsolinol-induced cytotoxicity by inhibiting apoptosis. Brain Research. 1099: 141-9 |
Bollimuntha S, Cornatzer E, Singh BB. (2005) Plasma membrane localization and function of TRPC1 is dependent on its interaction with beta-tubulin in retinal epithelium cells. Visual Neuroscience. 22: 163-70 |
Bollimuntha S, Singh BB, Shavali S, et al. (2005) TRPC1-mediated inhibition of 1-methyl-4-phenylpyridinium ion neurotoxicity in human SH-SY5Y neuroblastoma cells. The Journal of Biological Chemistry. 280: 2132-40 |
Singh BB, Lockwich TP, Bandyopadhyay BC, et al. (2004) VAMP2-dependent exocytosis regulates plasma membrane insertion of TRPC3 channels and contributes to agonist-stimulated Ca2+ influx. Molecular Cell. 15: 635-46 |