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Data in Brief|November 26, 2021
Data on Connexin 43 hemichannels regulation of cellular redox in lensYumeng Quan, Yu Du, Changrui Wu, et al.Plos One|March 2, 2013
Identification of a disulfide bridge important for transport function of SNAT4 neutral amino acid transporterRugmani Padmanabhan Iyer, Sumin Gu, Bruce J Nicholson, et al.Cancer Letters|July 9, 2026
Mechano-activation of Osteocytic Connexin Hemichannels Prime Microenvironment in Suppressing Breast Cancer Bone MetastasisXuewei Wang, Rui Hua, Manuel A Riquelme, et al.Journal of Cell Science|December 22, 2010
Aquaporin 0 enhances gap junction coupling via its cell adhesion function and interaction with connexin 50Jialu Liu, Ji Xu, Sumin Gu, et al.The Journal of Biological Chemistry|September 16, 2011
Membrane topological structure of neutral system N/A amino acid transporter 4 (SNAT4) proteinQian Shi, Rugmani Padmanabhan, Carla J Villegas, et al.Experimental Eye Research|August 5, 2014
Regional changes of AQP0-dependent square array junction and gap junction associated with cortical cataract formation in the Emory mutant mouseSondip K Biswas, Lawrence Brako, Sumin Gu, et al.The Journal of Biological Chemistry|February 3, 2023
The second extracellular domain of connexin 50 is important for in cell adhesion, lens differentiation, and adhesion molecule expressionZhen Li, Yumeng Quan, Guangyan Wang, et al.JCI Insight|December 6, 2024
Activation of connexin hemichannels enhances mechanosensitivity and anabolism in disused and aged boneDezhi Zhao, Chao Tu, Lidan Zhang, et al.Bone Research|April 25, 2019
Connexin 43 hemichannels protect bone loss during estrogen deficiencyLiang Ma, Rui Hua, Yi Tian, et al.The Journal of Biological Chemistry|March 16, 2012
Developmental truncations of connexin 50 by caspases adaptively regulate gap junctions/hemichannels and protect lens cells against ultraviolet radiationKe Wang, Sumin Gu, Xinye Yin, et al.Pageof 150