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Comprehensive Physiology|August 7, 2024
Epithelial Na + Channels Function as Extracellular SensorsOssama B Kashlan, Xue-Ping Wang, Shaohu Sheng, et al.
American Journal of Physiology. Renal Physiology|August 3, 2023
Receptor-associated protein impairs ligand binding to megalin and megalin-dependent endocytic flux in proximal tubule cellsKimberly R Long, Youssef Rbaibi, Ossama B Kashlan, et al.
The Journal of Biological Chemistry|March 11, 2011
Insights into the mechanism of pore opening of acid-sensing ion channel 1aLindsey A Tolino, Sora Okumura, Ossama B Kashlan, et al.
Biopolymers|December 9, 2004
Mechanisms of action of peptide inhibitors of mammalian ribonucleotide reductase targeting quaternary structureYing Gao, Ossama B Kashlan, Jaskiran Kaur, et al.
The FEBS Journal|February 22, 2005
The enantioselectivities of the active and allosteric sites of mammalian ribonucleotide reductaseJian He, Béatrice Roy, Christian Périgaud, et al.
Advances in Enzyme Regulation|August 2, 2005
Peptide inhibitors of mammalian ribonucleotide reductaseBarry S Cooperman, Ying Gao, Chiheng Tan, et al.
The Journal of Biological Chemistry|November 13, 2014
Na+ inhibits the epithelial Na+ channel by binding to a site in an extracellular acidic cleftOssama B Kashlan, Brandon M Blobner, Zachary Zuzek, et al.
The Journal of Biological Chemistry|April 19, 2012
Inhibitory tract traps the epithelial Na+ channel in a low activity conformationOssama B Kashlan, Brandon M Blobner, Zachary Zuzek, et al.
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