Lack of association between a functional genetic variant of connexin 37 and ischemic stroke in a Taiwanese population
THROMBOSIS RESEARCH
Authors: Juo, Suh-Hang Hank; Liao, Yi-Chu; Lin, Hsiu-Fen; Chen, Po-Lin; Lin, Wen-Yi; Lin, Ruey-Tay
Abstract
Introduction: Connexin 37, encoded by the GJA4 gene, protects against atherosclerosis. A recent study reported an association between polymorphism rs1764391 at GJA4 and ischemic stroke in a Chinese population. We aimed to replicate this result. Materials and Methods: A total of 958 ischemic stroke patients and 2196 controls were enrolled for the study. All participants were Chinese residing in Taiwan. Logistic regression analysis with adjustment for traditional risk factors was used to estimate the genetic effect. We also performed stratification analyses by sex and stroke subtypes. Literature reviews were conducted for available genetic association studies investigating rs1764391 and cardiovascular phenotypes. Results: We did not find any significant association for overall stroke (p=0.87) or from any subset analyses. Eight studies addressing the associations between rs1764391 and cardiovascular phenotypes had a sample size greater than 1000. Including the present study, five out of the eight large-scale studies found no association. Conclusions: GJA4 polymorphism is not associated with stroke risk in the Taiwanese population. (C) 2012 Elsevier Ltd. All rights reserved.
Regulation of Cx37 channel and growth-suppressive properties by phosphorylation
JOURNAL OF CELL SCIENCE
Authors: Jacobsen, Nicole L.; Pontifex, Tasha K.; Li, Hanjun; Solan, Joell L.; Lampe, Paul D.; Sorgen, Paul L.; Burt, Janis M.
Abstract
Growth suppression mediated by connexin 37 (Cx37; also known as GJA4) requires interaction between its C-terminus and functional pore-forming domain. Using rat insulinoma cells, we show that Cx37 induces cell death and cell cycle arrest, and slowed cell cycling. Whether differential phosphorylation might regulate intramolecular interactions, and consequently the growth-suppressive phenotype, is unknown. Protein kinase C inhibition increased the open state probability of low-conductance gap junction channels (GJChs) and reduced GJCh closed state probability. Substituting alanine at serine residues 275, 302 and 328 eliminated Cx37-induced cell death, supported proliferation and reduced the GJCh closed state probability. With additional alanine for serine substitutions at residues 285, 319, 321 and 325, Cx37-induced cell death was eliminated and the growth arrest period prolonged, and GJCh closed state probability was restored. With aspartate substitution at these seven sites, apoptosis was induced and the open state probability of large conductance GJChs (and hemichannels) was increased. These data suggest that differential phosphorylation of the C-terminus regulates channel conformation and, thereby, cell cycle progression and cell survival.