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细胞间通讯的功能与结构评估。双丁酰环磷腺苷处理的培养心肌细胞中传导速度增加及连接蛋白表达增强。

Functional and structural assessment of intercellular communication. Increased conduction velocity and enhanced connexin expression in dibutyryl cAMP-treated cultured cardiac myocytes.

作者信息

Darrow B J, Fast V G, Kléber A G, Beyer E C, Saffitz J E

机构信息

Department of Pathology, Washington University, St. Louis, MO 63110, USA.

出版信息

Circ Res. 1996 Aug;79(2):174-83. doi: 10.1161/01.res.79.2.174.

Abstract

Remodeling of conduction pathways in the hypertrophic response to myocardial injury is a potential mechanism leading to the development of anatomic substrates of lethal arrhythmias. To delineate the responsible mechanisms and to directly relate changes in intercellular coupling at gap junctions with electrophysiological alterations, we studied the effects of cAMP, a mediator of cardiac hypertrophy, on action potential conduction velocity and connexin expression in neonatal rat ventricular myocyte cultures. Conduction velocity was measured with an optical activation mapping technique in cells loaded with the voltage-sensitive dye RH-237. Action potentials were conducted 24% to 29% more rapidly (P < .005) after incubating cultures for 24 hours with the cAMP analogue dibutyryl cAMP (db-cAMP, 1 mmol/L). However, db-cAMP caused no change in the maximum rate of rise of the action potential upstroke, Vmax. Electron and immunofluorescence microscopy revealed a significant increase in the number and size of gap junctions in db-cAMP-treated cells. Immunoblotting showed that the total amounts of the ventricular gap junction proteins connexin43 and connexin45 (Cx43 and Cx45, respectively) increased 2- to 4-fold. Immuno-precipitation of metabolically labeled connexin proteins revealed a dose-dependent increase in the rate of Cx45 protein synthesis in myocytes exposed to db-cAMP ( > 2-fold after a 4-hour exposure) but no change in the Cx43 synthesis rate. Northern blot analysis demonstrated a time-dependent increase in the amount of Cx43 mRNA, with a maximum 3.3-fold increase after 4 hours of exposure to 1 mmol/L db-cAMP; cycloheximide did not block this effect. In contrast, Cx45 mRNA levels were not altered significantly after db-cAMP treatment. Thus, cAMP causes a significant increase in conduction velocity that appears to be attributable largely to enhanced expression of proteins responsible for intercellular communication. Cx43 and Cx45 levels appear to be upregulated by cAMP by disparate molecular mechanisms.

摘要

心肌损伤肥大反应中传导通路的重塑是导致致死性心律失常解剖学基质形成的潜在机制。为了阐明其相关机制,并直接将缝隙连接处细胞间偶联的变化与电生理改变联系起来,我们研究了心脏肥大介质环磷酸腺苷(cAMP)对新生大鼠心室肌细胞培养物中动作电位传导速度和连接蛋白表达的影响。使用光学激活标测技术在加载电压敏感染料RH-237的细胞中测量传导速度。用cAMP类似物二丁酰环磷酸腺苷(db-cAMP,1 mmol/L)孵育培养物24小时后,动作电位的传导速度加快了24%至29%(P <.005)。然而,db-cAMP并未使动作电位上升支的最大上升速率Vmax发生改变。电子显微镜和免疫荧光显微镜检查显示,经db-cAMP处理的细胞中缝隙连接的数量和大小显著增加。免疫印迹显示心室缝隙连接蛋白连接蛋白43(Cx43)和连接蛋白45(Cx45)的总量分别增加了2至4倍。对代谢标记的连接蛋白进行免疫沉淀显示,暴露于db-cAMP的心肌细胞中Cx45蛋白合成速率呈剂量依赖性增加(4小时暴露后增加超过2倍),但Cx43合成速率没有变化。Northern印迹分析表明,Cx43 mRNA的量呈时间依赖性增加,在暴露于1 mmol/L db-cAMP 4小时后最大增加3.3倍;放线菌酮并未阻断这种效应。相比之下,db-cAMP处理后Cx45 mRNA水平没有明显改变。因此,cAMP导致传导速度显著增加,这似乎主要归因于负责细胞间通讯的蛋白质表达增强。cAMP似乎通过不同的分子机制上调Cx43和Cx45的水平。

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