Dorothy M. Davis Heart and Lung Research Institute, Columbus, OH 43210, USA.
J Biol Chem. 2012 Aug 31;287(36):30268-81. doi: 10.1074/jbc.M112.368415. Epub 2012 Jul 9.
Ankyrins (ankyrin-R, -B, and -G) are adapter proteins linked with defects in metazoan physiology. Ankyrin-B (encoded by ANK2) loss-of-function mutations are directly associated with human cardiovascular phenotypes including sinus node disease, atrial fibrillation, ventricular tachycardia, and sudden cardiac death. Despite the link between ankyrin-B dysfunction and monogenic disease, there are no data linking ankyrin-B regulation with common forms of human heart failure. Here, we report that ankyrin-B levels are altered in both ischemic and non-ischemic human heart failure. Mechanistically, we demonstrate that cardiac ankyrin-B levels are tightly regulated downstream of reactive oxygen species, intracellular calcium, and the calcium-dependent protease calpain, all hallmarks of human myocardial injury and heart failure. Surprisingly, β(II)-spectrin, previously thought to mediate ankyrin-dependent modulation in the nervous system and heart, is not coordinately regulated with ankyrin-B or its downstream partners. Finally, our data implicate ankyrin-B expression as required for vertebrate myocardial protection as hearts deficient in ankyrin-B show increased cardiac damage and impaired function relative to wild-type mouse hearts following ischemia reperfusion. In summary, our findings provide the data of ankyrin-B regulation in human heart failure, provide insight into candidate pathways for ankyrin-B regulation in acquired human cardiovascular disease, and surprisingly, implicate ankyrin-B as a molecular component for cardioprotection following ischemia.
锚蛋白(ankyrin-R、-B 和 -G)是与后生动物生理学缺陷相关的衔接蛋白。锚蛋白-B(由 ANK2 编码)功能丧失突变与人类心血管表型直接相关,包括窦房结疾病、心房颤动、室性心动过速和心源性猝死。尽管锚蛋白-B 功能障碍与单基因疾病之间存在联系,但尚无数据将锚蛋白-B 调节与人类心力衰竭的常见形式联系起来。在这里,我们报告在缺血性和非缺血性人类心力衰竭中都改变了锚蛋白-B 的水平。从机制上讲,我们证明了心脏锚蛋白-B 的水平受到活性氧、细胞内钙和钙依赖性蛋白酶钙蛋白酶的下游严格调节,所有这些都是人类心肌损伤和心力衰竭的标志。令人惊讶的是,β(II)-spectrin,以前被认为在神经系统和心脏中介导锚蛋白依赖性调节,与锚蛋白-B 或其下游伴侣的调节不一致。最后,我们的数据表明,锚蛋白-B 的表达是脊椎动物心肌保护所必需的,因为与野生型小鼠心脏相比,缺乏锚蛋白-B 的心脏在缺血再灌注后表现出增加的心脏损伤和功能障碍。总之,我们的发现提供了人类心力衰竭中锚蛋白-B 调节的数据,深入了解了获得性人类心血管疾病中锚蛋白-B 调节的候选途径,并且令人惊讶的是,将锚蛋白-B 作为缺血后心脏保护的分子成分。