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Biology of Reproduction
|
January 30, 2009
A dominant loss-of-function GJA1 (Cx43) mutant impairs parturition in the mouse
Dan Tong, Xuerong Lu, Hong-Xing Wang, et al.
Molecular Biology of the Cell
|
May 27, 2016
Specific functional pathologies of Cx43 mutations associated with oculodentodigital dysplasia
John J Kelly, Jessica L Esseltine, Qing Shao, et al.
Cell Communication & Adhesion
|
March 15, 2006
Functional characterization of oculodentodigital dysplasia-associated Cx43 mutants
Elizabeth McLachlan, Janet L Manias, Xiang-Qun Gong, et al.
The Journal of Physiology
|
April 20, 2021
Connexin 46 and connexin 50 gap junction channel properties are shaped by structural and dynamic features of their N-terminal domains
Benny Yue, Bassam G Haddad, Umair Khan, et al.
Heart Rhythm
|
January 11, 2021
Connexin45 (GJC1) loss-of-function mutation contributes to familial atrial fibrillation and conduction disease
Ruo-Gu Li, Ying-Jia Xu, Willy G Ye, et al.
International Journal of Molecular Sciences
|
August 7, 2021
Differential Domain Distribution of gnomAD- and Disease-Linked Connexin Missense Variants
Donglin Bai, Jiayi Wang, Tianhe Li, et al.
Journal of Cell Science
|
October 11, 2007
Pannexin 1 and pannexin 3 are glycoproteins that exhibit many distinct characteristics from the connexin family of gap junction proteins
Silvia Penuela, Ruchi Bhalla, Xiang-Qun Gong, et al.
Journal of Cell Science
|
March 27, 2024
Cx31.1 can selectively intermix with co-expressed connexins to facilitate its assembly into gap junctions
Stephanie E Leighton, Robert S Wong, Sergiu A Lucaciu, et al.
The Journal of Biological Chemistry
|
January 13, 2005
Oculodentodigital dysplasia-causing connexin43 mutants are non-functional and exhibit dominant effects on wild-type connexin43
Wendi Roscoe, Gregory I L Veitch, Xiang-Qun Gong, et al.
Human Mutation
|
January 26, 2013
Novel germline GJA5/connexin40 mutations associated with lone atrial fibrillation impair gap junctional intercellular communication
Yiguo Sun, Yi-Qing Yang, Xiang-Qun Gong, et al.
Page
of 7
Search research articles
Search
Showing results (51-60 of 67) with videos related to
Sort By:
Page
of 7
Biology of Reproduction
|
January 30, 2009
A dominant loss-of-function GJA1 (Cx43) mutant impairs parturition in the mouse
Dan Tong, Xuerong Lu, Hong-Xing Wang, et al.
Molecular Biology of the Cell
|
May 27, 2016
Specific functional pathologies of Cx43 mutations associated with oculodentodigital dysplasia
John J Kelly, Jessica L Esseltine, Qing Shao, et al.
Cell Communication & Adhesion
|
March 15, 2006
Functional characterization of oculodentodigital dysplasia-associated Cx43 mutants
Elizabeth McLachlan, Janet L Manias, Xiang-Qun Gong, et al.
The Journal of Physiology
|
April 20, 2021
Connexin 46 and connexin 50 gap junction channel properties are shaped by structural and dynamic features of their N-terminal domains
Benny Yue, Bassam G Haddad, Umair Khan, et al.
Heart Rhythm
|
January 11, 2021
Connexin45 (GJC1) loss-of-function mutation contributes to familial atrial fibrillation and conduction disease
Ruo-Gu Li, Ying-Jia Xu, Willy G Ye, et al.
International Journal of Molecular Sciences
|
August 7, 2021
Differential Domain Distribution of gnomAD- and Disease-Linked Connexin Missense Variants
Donglin Bai, Jiayi Wang, Tianhe Li, et al.
Journal of Cell Science
|
October 11, 2007
Pannexin 1 and pannexin 3 are glycoproteins that exhibit many distinct characteristics from the connexin family of gap junction proteins
Silvia Penuela, Ruchi Bhalla, Xiang-Qun Gong, et al.
Journal of Cell Science
|
March 27, 2024
Cx31.1 can selectively intermix with co-expressed connexins to facilitate its assembly into gap junctions
Stephanie E Leighton, Robert S Wong, Sergiu A Lucaciu, et al.
The Journal of Biological Chemistry
|
January 13, 2005
Oculodentodigital dysplasia-causing connexin43 mutants are non-functional and exhibit dominant effects on wild-type connexin43
Wendi Roscoe, Gregory I L Veitch, Xiang-Qun Gong, et al.
Human Mutation
|
January 26, 2013
Novel germline GJA5/connexin40 mutations associated with lone atrial fibrillation impair gap junctional intercellular communication
Yiguo Sun, Yi-Qing Yang, Xiang-Qun Gong, et al.
Page
of 7