Structural and Molecular Mechanisms of Gap Junction Remodeling in Epicardial Border Zone Myocytes following Myocardial Infarction

被引:139
作者
Kieken, Fabien [2 ]
Mutsaers, Nancy [3 ]
Dolmatova, Elena
Virgil, Kelly [2 ]
Wit, Andrew L. [3 ]
Kellezi, Admir [2 ]
Hirst-Jensen, Bethany J. [2 ]
Duffy, Heather S. [1 ]
Sorgen, Paul L. [2 ]
机构
[1] Beth Israel Deaconess Med Ctr, Dept Cardiol, Ctr Life Sci 9 913, Boston, MA 02115 USA
[2] Univ Nebraska Med Ctr, Dept Biochem & Mol Biol, Omaha, NE USA
[3] Columbia Univ, Coll Phys & Surg, Dept Pharmacol, New York, NY USA
关键词
arrhythmia; cardiac gap junction connexins; myocardial ischemia; cell-cell coupling; HEALING CANINE INFARCTS; C-SRC; CONNEXIN PHOSPHORYLATION; ZONULA OCCLUDENS-1; CARBOXYL-TERMINUS; CARDIAC MYOCYTES; HEART-FAILURE; PROTEIN; DOMAIN; ZO-1;
D O I
10.1161/CIRCRESAHA.108.190454
中图分类号
R5 [内科学];
学科分类号
100201 [内科学];
摘要
Lateralization of the ventricular gap junction protein connexin 43 (Cx43) occurs in epicardial border zone myocytes following myocardial infarction (MI) and is arrhythmogenic. Alterations in Cx43 protein partners have been hypothesized to play a role in lateralization although mechanisms by which this occurs are unknown. To examine potential mechanisms we did nuclear magnetic resonance, yeast 2-hybrid, and surface plasmon resonance studies and found that the SH3 domain of the tyrosine kinase c-Src binds to the Cx43 scaffolding protein zonula occludens-1 (ZO-1) with a higher affinity than does Cx43. This suggests c-Src outcompetes Cx43 for binding to ZO-1, thus acting as a chaperone for ZO-1 and causing unhooking from Cx43. To determine whether c-Src/ZO-1 interactions affect Cx43 lateralization within the epicardial border zone, we performed Western blot, immunoprecipitation, and immunolocalization for active c-Src (p-cSrc) post-MI using a canine model of coronary occlusion. We found that post-MI p-cSrc interacts with ZO-1 as Cx43 begins to decrease its interaction with ZO-1 and undergo initial loss of intercalated disk localization. This indicates that the molecular mechanisms by which Cx43 is lost from the intercalated disk following MI includes an interaction of p-cSrc with ZO-1 and subsequent loss of scaffolding of Cx43 leaving Cx43 free to diffuse in myocyte membranes from areas of high Cx43, as at the intercalated disk, to regions of lower Cx43 content, the lateral myocyte membrane. Therefore shifts in Cx43 protein partners may underlie, in part, arrhythmogenesis in the post-MI heart. (Circ Res. 2009;104:1103-1112.)
引用
收藏
页码:1103 / U219
页数:19
相关论文
共 25 条
[1]
Dynamic changes in conduction velocity and gap junction properties during development of pacing-induced heart failure [J].
Akar, Fadi G. ;
Nass, Robert D. ;
Hahn, Samuel ;
Cingolani, Eugenio ;
Shah, Manish ;
Hesketh, Geoffrey G. ;
DiSilvestre, Deborah ;
Tunin, Richard S. ;
Kass, David A. ;
Tomaselli, Gordon F. .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2007, 293 (02) :H1223-H1230
[2]
Dephosphorylation and intracellular redistribution of ventricular connexin43 during electrical uncoupling induced by ischemia [J].
Beardslee, MA ;
Lerner, DL ;
Tadros, PN ;
Laing, JG ;
Beyer, EC ;
Yamada, KA ;
Kléber, AG ;
Schuessler, RB ;
Saffitz, JE .
CIRCULATION RESEARCH, 2000, 87 (08) :656-662
[3]
Gap junction remodelling in human heart failure is associated with increased interaction of connexin43 with ZO-1 [J].
Bruce, Alexandra F. ;
Rothery, Stephen ;
Dupont, Emmanuel ;
Severs, Nicholas J. .
CARDIOVASCULAR RESEARCH, 2008, 77 (04) :757-765
[4]
The gap junction protein connexin32 interacts with the Src homology 3/Hook domain of discs large homolog 1 [J].
Duffy, Heather S. ;
Iacobas, Ionela ;
Hotchkiss, Kylie ;
Hirst-Jensen, Bethany J. ;
Bosco, Alejandra ;
Dandachi, Nadine ;
Dermietzel, Rolf ;
Sorgen, Paul L. ;
Spray, David C. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2007, 282 (13) :9789-9796
[5]
Regulation of connexin43 protein complexes by intracellular acidification [J].
Duffy, HS ;
Ashton, AW ;
O'Donnell, P ;
Coombs, W ;
Taffet, SM ;
Delmar, M ;
Spray, DC .
CIRCULATION RESEARCH, 2004, 94 (02) :215-222
[6]
2 BINDING ORIENTATIONS FOR PEPTIDES TO THE SRC SH3 DOMAIN - DEVELOPMENT OF A GENERAL-MODEL FOR SH3-LIGAND INTERACTIONS [J].
FENG, SB ;
CHEN, JK ;
YU, HT ;
SIMON, JA ;
SCHREIBER, SL .
SCIENCE, 1994, 266 (5188) :1241-1247
[7]
The gap junction protein connexin43 interacts with the second PDZ domain of the zona occludens-1 protein [J].
Giepmans, BNG ;
Moolenaar, WH .
CURRENT BIOLOGY, 1998, 8 (16) :931-934
[8]
Characterization of the pH-dependent interaction between the gap junction protein connexin43 carboxyl terminus and cytoplasmic loop domains [J].
Hirst-Jensen, Bethany J. ;
Sahoo, Prangya ;
Kieken, Fabien ;
Delmar, Mario ;
Sorgen, Paul L. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2007, 282 (08) :5801-5813
[9]
Zonula occludens-1 alters connexin43 gap junction size and organization by influencing channel accretion [J].
Hunter, AW ;
Barker, RJ ;
Zhu, C ;
Gourdie, RG .
MOLECULAR BIOLOGY OF THE CELL, 2005, 16 (12) :5686-5698
[10]
Structural and molecular pathology of the heart in Carvajal syndrome [J].
Kaplan, SR ;
Gard, JJ ;
Carvajal-Huerta, L ;
Ruiz-Cabezas, JC ;
Thiene, G ;
Saffitz, JE .
CARDIOVASCULAR PATHOLOGY, 2004, 13 (01) :26-32