PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 11, 2004Cardiovascular Research25 citations

Alterations of intercellular communication in neonatal cardiac myocytes from connexin43 null mice

View Full Paper
MVMatthijs Vink

Structured PICO

P
Population
Neonatal cardiac myocytes from connexin43 null (-/-), heterozygous (+/-), and wildtype (+/+) mice
I
Intervention
Genetic knockout of connexin43 (Cx43 null)
C
Comparator
Wildtype (+/+) and heterozygous (+/-) littermates
O
Outcome
Gap junction expression and intercellular coupling (connexin mRNA and protein levels, connexin distribution, Ca2+ imaging, dye coupling, and electrophysiological properties)surrogate

In Cx43-deficient cardiac myocytes, the expression of other connexins only partially compensates for the functional loss, resulting in strongly impaired dye coupling and spontaneous beating.

Abstract

OBJECTIVE: To compare gap junction expression and intercellular coupling in wildtype neonatal cardiac myocytes to those from mice lacking the most abundant cardiac gap junction protein (connexin43, Cx43). METHODS: Northern and Western blots compared connexin mRNA and protein levels, immunocytochemistry evaluated connexin distribution in neonatal Cx43 null(-/-), heterozygous(+/-) and wildtype(+/+) mouse hearts. Ca(2+) imaging, dye coupling and electrophysiological methods evaluated intercellular communication. RESULTS: Similar levels of Cx40 and Cx45 were detected in all genotypes, although in adult cardiac tissue from wildtype mice, Cx43 expression was higher than in heterozygotes. After culturing dissociated cells for 3-4 days, cardiocytes beat spontaneously; in Cx43(+/+) and (+/-) cultures, the beating was generally quite synchronous. In Cx43(-/-) mice, interbeat intervals were on average twice as long and more variable than in Cx43(+/+) or Cx43(+/-) cultures. Junctional conductance was lower by about 60% in Cx43(-/-) as compared to Cx43(+/-) and (+/+) littermates; Lucifer Yellow dye coupling was virtually absent in Cx43(-/-) cardiomyocytes but was comparably strong in wildtype and heterozygous siblings. Macroscopic junctional conductance measurements on Cx43(-/-) cardiocytes showed slightly stronger voltage sensitivity in these cells than in Cx43(+/+) cardiocytes. Unitary junctional conductance measurements revealed distinct populations of channels contributing to macroscopic conductance for Cx43(+/+) and Cx43(-/-) genotypes. CONCLUSIONS: In Cx43-deficient cardiac myocytes, the expression of other connexins only partially compensates for the functional loss, with dye coupling and spontaneous beating being strongly impaired.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Matthijs Vink (2004) studied this question.

synapsesocial.com/papers/6a19939d1d4d911c80ea670ehttps://doi.org/10.1016/j.cardiores.2004.01.015
Ask AI
Helpful
Bookmark
Share
View Full Paper