David P. McCobb

Affiliations: 
Cornell University, Ithaca, NY, United States 
Area:
Neuroscience Biology, Animal Physiology Biology
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"David McCobb"
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Publications

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Liang Z, Chen L, McClafferty H, et al. (2011) Control of hypothalamic-pituitary-adrenal stress axis activity by the intermediate conductance calcium-activated potassium channel, SK4. The Journal of Physiology. 589: 5965-86
Chatterjee O, Taylor LA, Ahmed S, et al. (2009) Social stress alters expression of large conductance calcium-activated potassium channel subunits in mouse adrenal medulla and pituitary glands. Journal of Neuroendocrinology. 21: 167-76
Lai GJ, McCobb DP. (2006) Regulation of alternative splicing of Slo K+ channels in adrenal and pituitary during the stress-hyporesponsive period of rat development. Endocrinology. 147: 3961-7
King JT, Lovell PV, Rishniw M, et al. (2006) Beta2 and beta4 subunits of BK channels confer differential sensitivity to acute modulation by steroid hormones. Journal of Neurophysiology. 95: 2878-88
Mahmoud SF, McCobb DP. (2004) Regulation of S/o potassium channel alternative splicing in the pituitary by gonadal testosterone Journal of Neuroendocrinology. 16: 237-243
Lovell PV, King JT, McCobb DP. (2004) Acute modulation of adrenal chromaffin cell BK channel gating and cell excitability by glucocorticoids. Journal of Neurophysiology. 91: 561-70
McCobb DP. (2004) Towards a natural history of calcium-activated potassium channels Advances in Molecular and Cell Biology. 32: 51-71
McCobb DP, Hara Y, Lai GJ, et al. (2003) Subordination stress alters alternative splicing of the Slo gene in tree shrew adrenals. Hormones and Behavior. 43: 180-6
Lai GJ, McCobb DP. (2002) Opposing actions of adrenal androgens and glucocorticoids on alternative splicing of Slo potassium channels in bovine chromaffin cells. Proceedings of the National Academy of Sciences of the United States of America. 99: 7722-7
Mahmoud SF, Bezzerides AL, Riba R, et al. (2002) Accurate quantitative RT-PCR for relative expression of Slo splice variants. Journal of Neuroscience Methods. 115: 189-98
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