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American Journal of Physiology. Heart and Circulatory Physiology|September 16, 2015
Loss of Rad-GTPase produces a novel adaptive cardiac phenotype resistant to systolic decline with agingJanet R Manning, Catherine N Withers, Bryana Levitan, et al.The Journal of Biological Chemistry|June 23, 2006
Analysis of the complex between Ca2+ channel beta-subunit and the Rem GTPaseBrian S Finlin, Robert N Correll, Chunyan Pang, et al.Cell Calcium|February 21, 2009
Steady-state coupling of plasma membrane calcium entry to extrusion revealed by novel L-type calcium channel blockWilliam C Lester, Elizabeth A Schroder, Don E Burgess, et al.Journal of Molecular and Cellular Cardiology|February 8, 2021
Rad-GTPase contributes to heart rate via L-type calcium channel regulationBryana M Levitan, Brooke M Ahern, Ajoy Aloysius, et al.Journal of Lipid Research|December 8, 2009
Assessing the efficacy of protein farnesyltransferase inhibitors in mouse models of progeriaShao H Yang, Sandy Y Chang, Douglas A Andres, et al.Channels (Austin, Tex.)|May 12, 2010
Rem GTPase interacts with the proximal CaV1.2 C-terminus and modulates calcium-dependent channel inactivationChunyan Pang, Shawn M Crump, Ling Jin, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|April 2, 2004
Extracellular signal-regulated kinases regulate dendritic growth in rat sympathetic neuronsIn-Jung Kim, Karen M Drahushuk, Woo-Yang Kim, et al.Bone|July 23, 2017
Rad GTPase is essential for the regulation of bone density and bone marrow adipose tissue in miceCatherine N Withers, Drew M Brown, Innocent Byiringiro, et al.The Journal of Biological Chemistry|February 25, 2005
Regulation of L-type Ca2+ channel activity and insulin secretion by the Rem2 GTPaseBrian S Finlin, Amber L Mosley, Shawn M Crump, et al.Plos One|December 21, 2013
Valproic acid causes proteasomal degradation of DICER and influences miRNA expressionZhaiyi Zhang, Paolo Convertini, Manli Shen, et al.Pageof 8