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Functional expression and biophysical properties of polymorphic variants of the human gap junction protein connexin37

  • S. Sindhu Kumari
  • , K. Varadaraj
  • , Virginijus Valiunas
  • , S. V. Ramanan
  • , Emily A. Christensen
  • , Eric C. Beyer
  • , Peter R. Brink
  • Stony Brook University
  • The University of Chicago

Research output: Contribution to journalArticlepeer-review

35 Scopus citations

Abstract

Connexin37 (Cx37) forms gap junction channels between endothelial cells, and two polymorphic Cx37 variants (Cx37-S319 and Cx37-P319) have been identified with a possible link to atherosclerosis. We studied the gap junction channel properties of these hCx37 polymorphs by expression in stably transfected communication-deficient cells (N2A and RIN). We also expressed a third, truncated variant (Cx37-fs254Δ293) and Cx37 constructs containing epitope tags added to their amino or carboxyl termini. All Cx37 constructs were produced by the transfected cells as demonstrated by RT-PCR and immunoblotting and trafficked to appositional surfaces between cells as demonstrated by immunofluorescence microscopy. Dual whole cell patch-clamping studies demonstrated that Cx37-P319, Cx37-S319, and Cx37-fs254Δ293 had large unitary conductances (~ 300 pS). However, addition of an amino terminal T7 tag (T7-Cx37-fs254Δ293) produced a single channel conductance of 120-145 pS with a 24-30 pS residual state. Moreover, the kinetics of the voltage-dependent decline in junctional current for T7-Cx37-fs254Δ293 were significantly slower than for the wild type, implying a destabilization of the transition state. These data suggest that the amino terminus of Cx37 plays a significant role in gating as well as conductance. The carboxyl terminal tail has lesser influence on unitary conductance and inactivation kinetics. (C) 2000 Academic Press.

Original languageEnglish
Pages (from-to)216-224
Number of pages9
JournalBiochemical and Biophysical Research Communications
Volume274
Issue number1
DOIs
StatePublished - Jul 21 2000

Keywords

  • Conductance
  • Connexin
  • Frame shift
  • GFP tag
  • Intercellular communication
  • T7 tag
  • Truncation

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