Laboratorio de Cardiología Experimental, Servicio de Cardiología, Hospital Universitari Vall d'Hebron, Barcelona, Spain.
J Physiol. 2010 Apr 1;588(Pt 7):1139-51. doi: 10.1113/jphysiol.2009.186577. Epub 2010 Feb 15.
Connexin 43 (Cx43) plays an important role in cardioprotective signalling by mechanisms at least in part independent of gap junctional communication. To investigate whether this role is related to specific properties of this connexin isoform, we used a knock-in mouse model in which the coding region of Cx43 is replaced by that of Cx32. Homozygous Cx43KI32 mice showed reduced cell-to-cell Lucifer Yellow transfer (P < 0.01), but QRS duration and left ventricular fractional shortening (echocardiography) were similar to those in wild-type animals. NMR spectroscopy detected reduced ATP and increased lactate content in myocardium from homozygous Cx43KI32 animals (P < 0.05). Despite this, isolated homozygous Cx43KI32 hearts showed smaller infarcts after ischaemia-reperfusion (40 min/60 min) as compared to hearts from heterozygous and wild-type animals (13 and 31% reduction, respectively, P < 0.05). Cardiac myocytes isolated from Cx43KI32 mouse hearts also showed a reduced rate of cell death after simulated ischaemia-reperfusion. In a separate series of experiments, both ischaemic (4 cycles of 3.5 min of ischaemia and 5 min of reperfusion) and pharmacological (50 micromol l(-1) diazoxide, 10 min) preconditioning reduced infarct size in hearts from wild-type mice (by 24.84 and 26.63%, respectively, P < 0.05), but only ischaemic preconditioning was effective in hearts from heterozygous animals and both preconditioning strategies failed to protect Cx43KI32 homozygous hearts. These results demonstrate that Cx43 has an important and previously unknown modulatory effect in myocardial energy metabolism and tolerance to ischaemia, and plays a critical role in preconditioning protection, by mechanisms that are specific for this connexin isoform.
间隙连接蛋白 43(Cx43)通过至少部分独立于缝隙连接通讯的机制在心脏保护信号转导中发挥重要作用。为了研究这种作用是否与该连接蛋白同种型的特定性质有关,我们使用了一种基因敲入小鼠模型,其中 Cx43 的编码区被 Cx32 的编码区取代。Cx43KI32 纯合子小鼠的细胞间 Lucifer Yellow 转移减少(P < 0.01),但 QRS 持续时间和左心室分数缩短(超声心动图)与野生型动物相似。NMR 光谱检测到纯合子 Cx43KI32 动物的心肌中 ATP 减少和乳酸含量增加(P < 0.05)。尽管如此,与杂合子和野生型动物的心脏相比,缺血再灌注(40 min/60 min)后分离的纯合子 Cx43KI32 心脏的梗塞面积较小(分别减少 13%和 31%,P < 0.05)。从 Cx43KI32 小鼠心脏分离的心肌细胞在模拟缺血再灌注后细胞死亡的速度也降低。在另一系列实验中,缺血(4 个 3.5 分钟缺血和 5 分钟再灌注周期)和药理学(50 μmol l(-1))预处理均减少了野生型小鼠心脏的梗塞面积(分别减少 24.84%和 26.63%,P < 0.05),但仅缺血预处理对杂合子动物的心脏有效,两种预处理策略均不能保护 Cx43KI32 纯合子心脏。这些结果表明,Cx43 在心肌能量代谢和对缺血的耐受性方面具有重要的、以前未知的调节作用,并且通过特定于这种连接蛋白同种型的机制在预处理保护中发挥关键作用。