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Wenli Dai, Rangarajan D. Nadadur, Jaclyn A. BrennanHeather L. Smith, Kaitlyn M. Shen, Margaret Gadek, Brigitte Laforest, Mingyi WangJoanna Gemel, Ye Li, Jing ZhangBruce D. ZimanJiajie YanXun AiEric C. Beyer, Edward G. LakataNarayanan Kasthuri, Igor R. EfimovMichael T. Broman, Ivan P. Moskowitz, Le Shen & Christopher R. Weber. (2020) ZO-1 Regulates Intercalated Disc Composition and Atrioventricular Node Conduction. Circulation Research 127:2.
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Gaelle Spagnol, Andrew Trease, Li Zheng, Mirtha Gutierrez, Ishika Basu, Cleofes Sarmiento, Gabriella Moore, Matthew Cervantes & Paul Sorgen. (2018) Connexin43 Carboxyl-Terminal Domain Directly Interacts with β-Catenin. International Journal of Molecular Sciences 19:6, pages 1562.
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Paul Sorgen, Andrew Trease, Gaelle Spagnol, Mario Delmar & Morten Nielsen. (2018) Protein–Protein Interactions with Connexin 43: Regulation and Function. International Journal of Molecular Sciences 19:5, pages 1428.
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Hanjun Li, Gaelle Spagnol, Tasha K. Pontifex, Janis M. Burt & Paul L. Sorgen. (2017) Chemical shift assignments of the connexin37 carboxyl terminal domain. Biomolecular NMR Assignments 11:2, pages 137-141.
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Gaelle Spagnol, Fabien Kieken, Jennifer L. Kopanic, Hanjun Li, Sydney Zach, Kelly L. Stauch, Rosslyn Grosely & Paul L. Sorgen. (2016) Structural Studies of the Nedd4 WW Domains and Their Selectivity for the Connexin43 (Cx43) Carboxyl Terminus. Journal of Biological Chemistry 291:14, pages 7637-7650.
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Gaëlle Spagnol, Mona Al-Mugotir, Jennifer L. Kopanic, Sydney Zach, Hanjun Li, Andrew J. Trease, Kelly L. Stauch, Rosslyn Grosely, Matthew Cervantes & Paul L. Sorgen. (2016) Secondary structural analysis of the carboxyl-terminal domain from different connexin isoforms. Biopolymers 105:3, pages 143-162.
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Merlijn J. Meens, Brenda R. Kwak & Heather S. Duffy. (2015) Role of connexins and pannexins in cardiovascular physiology. Cellular and Molecular Life Sciences 72:15, pages 2779-2792.
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Jennifer L. KopanicBarbara SchlingmannMichael KovalAlan F. LauPaul L. SorgenVivian F. Su. (2015) Degradation of gap junction connexins is regulated by the interaction with Cx43-interacting protein of 75 kDa (CIP75). Biochemical Journal 466:3, pages 571-585.
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Mohammad Siddiqui, Scott Swarbreck, Qing Shao, Dan Secor, Tianqing Peng, Dale W. Laird & Karel Tyml. (2015) Critical Role of Cx40 in Reduced Endothelial Electrical Coupling by Lipopolysaccharide and Hypoxia-Reoxygenation. Journal of Vascular Research 52:6, pages 396-403.
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Jennifer L. Kopanic, Mona H. Al-mugotir, Fabien Kieken, Sydney Zach, Andrew J. Trease & Paul L. Sorgen. (2014) Characterization of the Connexin45 Carboxyl-Terminal Domain Structure and Interactions with Molecular Partners. Biophysical Journal 106:10, pages 2184-2195.
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Marie Billaud, Alexander W. Lohman, Scott R. Johnstone, Lauren A. Biwer, Stephanie Mutchler & Brant E. Isakson. (2014) Regulation of Cellular Communication by Signaling Microdomains in the Blood Vessel Wall. Pharmacological Reviews 66:2, pages 513-569.
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Valentina Guida, Rosangela Ferese, Marcella Rocchetti, Monica Bonetti, Anna Sarkozy, Serena Cecchetti, Vania Gelmetti, Francesca Lepri, Massimiliano Copetti, Giuseppe Lamorte, Maria Cristina Digilio, Bruno Marino, Antonio Zaza, Jeroen den Hertog, Bruno Dallapiccola & Alessandro De Luca. (2012) A variant in the carboxyl-terminus of connexin 40 alters GAP junctions and increases risk for tetralogy of Fallot. European Journal of Human Genetics 21:1, pages 69-75.
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Jean-Claude Herv?Micka?l Derangeon, Denis Sarrouilhe, Ben N.G. Giepmans & Nicolas Bourmeyster. (2012) Gap junctional channels are parts of multiprotein complexes. Biochimica et Biophysica Acta (BBA) - Biomembranes 1818:8, pages 1844-1865.
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Lorenza González-MariscalMiguel QuirósMonica Díaz-Coránguez. (2011) ZO Proteins and Redox-Dependent Processes. Antioxidants & Redox Signaling 15:5, pages 1235-1253.
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Raf Ponsaerts, Elke De Vuyst, Mauricio Retamal, Catheleyne D'Hondt, Dieter Vermeire, Nan Wang, Humbert De Smedt, Pascale Zimmermann, Bernard Himpens, Johan Vereecke, Luc Leybaert & Geert Bultynck. (2010) Intramolecular loop/tail interactions are essential for connexin 43‐hemichannel activity. The FASEB Journal 24:11, pages 4378-4395.
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