Centro de Investigaciones Cardiovasculares, Consejo Nacional de Investigaciones Científicas y Técnicas, Facultad de Ciencias Médicas, Universidad Nacional de La Plata, 1900 La Plata, Argentina.
J Mol Cell Cardiol. 2012 Mar;52(3):741-52. doi: 10.1016/j.yjmcc.2011.12.008. Epub 2011 Dec 22.
Two AE3 transcripts, full-length (AE3fl) and cardiac (AE3c) are expressed in the heart. AE3 catalyzes electroneutral Cl(-)/HCO(3)(-) exchange across cardiomyocyte sarcolemma. AE proteins associate with carbonic anhydrases (CA), including CAII and CAIV, forming a HCO(3)(-) transport metabolon (BTM), increasing HCO(3)(-) fluxes and regulating cardiomyocytes pH. CAXIV, which is also expressed in the heart's sarcolemma, is a transmembrane enzyme with an extracellular catalytic domain. Herein, AE3/CAXIV physical association was examined by coimmunoprecipitation using rodent heart lysates. CAXIV immunoprecipitated with anti-AE3 antibody and both AE3fl and AE3c were reciprocally immunoprecipitated using anti-CAXIV antibody, indicating AE3fl-AE3c/CAXIV interaction in the myocardium. Coimmunoprecipitation experiments on heart lysates from a mouse with targeted disruption of the ae3 gene, failed to pull down AE3 with the CAXIV antibody. Confocal images demonstrated colocalization of CAXIV and AE3 in mouse ventricular myocytes. Functional association of AE3fl and CAXIV was examined in isolated hypertrophic rat cardiomyocytes, using fluorescence measurements of BCECF to monitor cytosolic pH. Hypertrophic cardiomyocytes of spontaneously hypertensive rats (SHR) presented elevated myocardial AE-mediated Cl(-)/HCO(3)(-) exchange activity (J(HCO3-) mM.min(-1)) compared to normal (Wistar) rats (7.5±1.3, n=4 versus 2.9±0.1, n=6, respectively). AE3fl, AE3c, CAII, CAIV, and CAIX protein expressions were similar in SHR and Wistar rat hearts. However, immunoblots revealed a twofold increase of CAXIV protein expression in the SHR myocardium compared to normal hearts (n=11). Furthermore, the CA-inhibitor, benzolamide, neutralized the stimulatory effect of extracellular CA on AE3 transport activity (3.7±1.5, n=3), normalizing AE3-dependent HCO(3)(-) fluxes in SHR. CAXIV/AE3 interaction constitutes an extracellular component of a BTM which potentiates AE3-mediated HCO(3)(-) transport in the heart. Increased CAXIV expression and consequent AE3/CAXIV complex formation would render AE3 hyperactive in the SHR heart.
两种 AE3 转录本,全长(AE3fl)和心脏(AE3c)在心脏中表达。AE3 催化心肌细胞膜的电中性 Cl(-)/HCO(3)(-)交换。AE 蛋白与碳酸酐酶(CA),包括 CAII 和 CAIV,形成 HCO(3)(-)转运代谢物(BTM),增加 HCO(3)(-)通量并调节心肌细胞 pH 值。也在心脏的肌膜中表达的 CAXIV 是一种具有细胞外催化结构域的跨膜酶。本文通过使用啮齿动物心脏裂解物进行共免疫沉淀来检查 AE3/CAXIV 的物理关联。用抗 AE3 抗体免疫沉淀 CAXIV,并用抗 CAXIV 抗体相互免疫沉淀 AE3fl 和 AE3c,表明心肌中存在 AE3fl-AE3c/CAXIV 相互作用。用靶向破坏 ae3 基因的小鼠的心脏裂解物进行共免疫沉淀实验,未能用 CAXIV 抗体拉下 AE3。共聚焦图像显示 CAXIV 和 AE3 在小鼠心室肌细胞中的共定位。使用 BCECF 荧光测量来监测细胞溶质 pH 值,在分离的肥厚性大鼠心肌细胞中检查 AE3fl 和 CAXIV 的功能关联。与正常(Wistar)大鼠(分别为 7.5±1.3 和 2.9±0.1 mM.min(-1))相比,自发性高血压大鼠(SHR)的肥厚性心肌病中 AE 介导的 Cl(-)/HCO(3)(-)交换活性(J(HCO3-))升高(n=4 对 n=6)。SHR 和 Wistar 大鼠心脏中的 AE3fl、AE3c、CAII、CAIV 和 CAIX 蛋白表达相似。然而,免疫印迹显示 SHR 心肌中 CAXIV 蛋白表达增加了两倍(n=11)。此外,CA 抑制剂苯甲酰胺中和了细胞外 CA 对 AE3 转运活性的刺激作用(3.7±1.5,n=3),使 SHR 中依赖 AE3 的 HCO(3)(-)通量正常化。CAXIV/AE3 相互作用构成了 BTM 的细胞外成分,增强了心脏中 AE3 介导的 HCO(3)(-)转运。CAXIV 表达增加和随之而来的 AE3/CAXIV 复合物形成会使 SHR 心脏中的 AE3 过度活跃。