Catherine Proenza, PhD

Affiliations: 
Physiology and Biophysics, Cardiology University of Colorado, Boulder, Boulder, CO, United States 
Area:
Sinoatrial node, HCN channels
Google:
"Catherine Proenza"
Mean distance: 14.43 (cluster 46)
 
SNBCP
Cross-listing: Neurotree

Parents

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Kurt G. Beam grad student 1994-1999 CU Boulder
Gary Yellen post-doc 2002-2005 Harvard Medical School

Children

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Luke M Blecker grad student 2022- University of Colorado, Denver (Neurotree)
Colin H Peters post-doc 2018- CU Boulder (Neurotree)
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Publications

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Peters CH, Singh RK, Langley AA, et al. (2023) LRMP inhibits the cAMP-dependence of HCN4 channels by disrupting intramolecular signal transduction. Biorxiv : the Preprint Server For Biology
Peters CH, Rickert C, Morotti S, et al. (2022) The funny current If is essential for the fight-or-flight response in cardiac pacemaker cells. The Journal of General Physiology. 154
Peters CH, Singh RK, Bankston JR, et al. (2022) Regulation of HCN Channels by Protein Interactions. Frontiers in Physiology. 13: 928507
Peters CH, Liu PW, Morotti S, et al. (2021) Bidirectional flow of the funny current (I) during the pacemaking cycle in murine sinoatrial node myocytes. Proceedings of the National Academy of Sciences of the United States of America. 118
Morotti S, Ni H, Peters CH, et al. (2021) Intracellular Na Modulates Pacemaking Activity in Murine Sinoatrial Node Myocytes: An Analysis. International Journal of Molecular Sciences. 22
Peters CH, Myers ME, Juchno J, et al. (2020) Isoform-specific regulation of HCN4 channels by a family of endoplasmic reticulum proteins. Proceedings of the National Academy of Sciences of the United States of America
Peters CH, Sharpe EJ, Proenza C. (2019) Cardiac Pacemaker Activity and Aging. Annual Review of Physiology
Proenza C. (2018) Exploiting natural regulation. Elife. 7
Morotti S, Sharpe E, Liu PW, et al. (2018) Increased Contribution of Funny Current to Sinoatrial Node Firing Activity at Slow Heart Rates Biophysical Journal. 114: 473a
Yavari A, Bellahcene M, Bucchi A, et al. (2017) Mammalian γ2 AMPK regulates intrinsic heart rate. Nature Communications. 8: 1258
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