Yannoukakos D, Stuart-Tilley A, Fernandez H A, Fey P, Duyk G, Alper S L
Molecular Medicine Unit, Beth Israel Hospital, Boston, MA 02215.
Circ Res. 1994 Oct;75(4):603-14. doi: 10.1161/01.res.75.4.603.
Cl-/HCO3- exchange contributes to regulation of pHi and [Cl-] in cardiac muscle, with possible effects on excitability and contractility. We have isolated human heart cDNAs, which encode two isoforms of the anion exchanger AE3. These clones share long portions of common sequence but have different 5' ends encoding distinct amino-terminal amino acid sequences. The longer AE3 polypeptide of 1232 amino acids, bAE3, displays nearly 96% amino acid sequence identity to the rat and mouse AE3 "brain isoforms." The shorter cAE3 polypeptide of 1034 amino acids in length corresponds to the rat AE3 "cardiac isoform." The unique N-terminal 73 amino acids of the cAE3 sequence are less well conserved between rat and human. Northern blot analysis with isoform-specific probes revealed the presence of both cAE3 and bAE3 mRNAs in human heart tissue. Both AE3 protein isoforms were overexpressed in Chinese hamster ovary cells and detected by immunoblot with antipeptide antibodies. Immunoblot studies of human cardiac membranes detected only cAE3 polypeptides, which were apparently not susceptible to enzymatic deglycosylation. Injection into Xenopus oocytes of cRNAs encoding either cAE3 or bAE3 produced increased 36Cl- uptake into the oocytes, confirming the ability of both AE3 isoforms to transport Cl-. The human AE3 gene was localized to chromosome 2. AE3 may provide a new pharmacologic target for antiarrhythmic and cardioprotective drugs.
氯离子/碳酸氢根离子交换有助于调节心肌细胞内pH值和氯离子浓度,可能对兴奋性和收缩性产生影响。我们分离出了人类心脏cDNA,其编码阴离子交换体AE3的两种亚型。这些克隆具有长段共同序列,但5'端不同,编码不同的氨基末端氨基酸序列。较长的含1232个氨基酸的AE3多肽bAE3,与大鼠和小鼠的AE3“脑亚型”氨基酸序列一致性接近96%。较短的含1034个氨基酸的cAE3多肽对应大鼠的AE3“心脏亚型”。cAE3序列独特的N端73个氨基酸在大鼠和人类之间保守性较差。用亚型特异性探针进行的Northern印迹分析显示人类心脏组织中存在cAE3和bAE3 mRNA。两种AE3蛋白亚型在中国仓鼠卵巢细胞中均过表达,并用抗肽抗体通过免疫印迹法检测。对人心脏膜的免疫印迹研究仅检测到cAE3多肽,其显然不易被酶促去糖基化。将编码cAE3或bAE3的cRNA注射到非洲爪蟾卵母细胞中,导致卵母细胞对36Cl-的摄取增加,证实两种AE3亚型均具有转运氯离子的能力。人类AE3基因定位于2号染色体。AE3可能为抗心律失常和心脏保护药物提供新的药理学靶点。