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来自连接蛋白43基因敲除小鼠的新生心肌细胞中细胞间通讯的改变。

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

作者信息

Vink Monique J, Suadicani Sylvia O, Vieira Delia M, Urban-Maldonado Marcia, Gao Yang, Fishman Glenn I, Spray David C

机构信息

Department of Neuroscience, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, NY 10461, USA.

出版信息

Cardiovasc Res. 2004 May 1;62(2):397-406. doi: 10.1016/j.cardiores.2004.01.015.

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.

摘要

目的

比较野生型新生心肌细胞与缺乏最丰富的心脏缝隙连接蛋白(连接蛋白43,Cx43)的小鼠心肌细胞之间的缝隙连接表达和细胞间偶联。

方法

Northern印迹和Western印迹比较连接蛋白mRNA和蛋白水平,免疫细胞化学评估连接蛋白在新生Cx43基因敲除(-/-)、杂合子(+/-)和野生型(+/+)小鼠心脏中的分布。钙成像、染料偶联和电生理方法评估细胞间通讯。

结果

在所有基因型中检测到相似水平的Cx40和Cx45,尽管在野生型小鼠的成年心脏组织中,Cx43表达高于杂合子。分离细胞培养3 - 4天后,心肌细胞自发搏动;在Cx43(+/+)和(+/-)培养物中,搏动通常相当同步。在Cx43(-/-)小鼠中,心跳间期平均是Cx43(+/+)或Cx43(+/-)培养物中的两倍,且更具变异性。与Cx43(+/-)和(+/+)同窝小鼠相比,Cx43(-/-)中的连接电导降低约60%;Cx43(-/-)心肌细胞中几乎不存在荧光黄染料偶联,但在野生型和杂合子同胞中相当强。对Cx43(-/-)心肌细胞的宏观连接电导测量显示,这些细胞中的电压敏感性略强于Cx43(+/+)心肌细胞。单通道连接电导测量揭示了不同群体的通道对Cx43(+/+)和Cx43(-/-)基因型的宏观电导有贡献。

结论

在缺乏Cx43的心肌细胞中,其他连接蛋白的表达仅部分补偿功能丧失,染料偶联和自发搏动受到严重损害。

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