Showing results (1-10 of 14) with videos related to
Sort By:
Pageof 2
Methods in Enzymology|June 8, 2021
Probing ion channel macromolecular interactions using fluorescence resonance energy transferSharen Rivas, Khadija Hanif, Nourdine Chakouri, et al.The Journal of Biological Chemistry|August 22, 2020
CaV channels reject signaling from a second CaM in eliciting Ca2+-dependent feedback regulationNourdine Chakouri, Johanna Diaz, Philemon S Yang, et al.Proceedings of the National Academy of Sciences of the United States of America|May 22, 2021
Elementary mechanisms of calmodulin regulation of NaV1.5 producing divergent arrhythmogenic phenotypesPo Wei Kang, Nourdine Chakouri, Johanna Diaz, et al.Theranostics|July 30, 2020
Screening for in-vivo regional contractile defaults to predict the delayed Doxorubicin Cardiotoxicity in Juvenile RatNourdine Chakouri, Charlotte Farah, Stefan Matecki, et al.International Journal of Cardiology|March 17, 2018
Stress-induced protein S-glutathionylation and phosphorylation crosstalk in cardiac sarcomeric proteins - Impact on heart functionNourdine Chakouri, Cyril Reboul, Doria Boulghobra, et al.Journal of Muscle Research and Cell Motility|February 23, 2017
The TRPM4 channel is functionally important for the beneficial cardiac remodeling induced by endurance trainingMélanie Gueffier, Justin Zintz, Karen Lambert, et al.Progress in Biophysics and Molecular Biology|October 8, 2020
New role of TRPM4 channel in the cardiac excitation-contraction coupling in response to physiological and pathological hypertrophy in mouseChristophe Hedon, Karen Lambert, Nourdine Chakouri, et al.Nature|December 20, 2021
Structural architecture of the human NALCN channelosomeMarc Kschonsak, Han Chow Chua, Claudia Weidling, et al.Nature Cardiovascular Research|June 6, 2022
Fibroblast growth factor homologous factors serve as a molecular rheostat in tuning arrhythmogenic cardiac late sodium currentNourdine Chakouri, Sharen Rivas, Daniel Roybal, et al.The Journal of Biological Chemistry|February 3, 2024
NEDD4L intramolecular interactions regulate its auto and substrate NaV1.5 ubiquitinationKatharine M Wright, Sara Nathan, Hanjie Jiang, et al.Pageof 2