Department of Pathophysiology, Naval Medical University, Shanghai, China.
Institute of Vascular Medicine, Peking University Third Hospital, Beijing, China.
FASEB J. 2020 Oct;34(10):13862-13876. doi: 10.1096/fj.202000160RR. Epub 2020 Aug 26.
The zinc-finger protein ZBTB20 regulates development and metabolism in multiple systems, and is essential for postnatal survival in mice. However, its potential role in the cardiovascular system remains undefined. Here, we demonstrate that ZBTB20 is critically involved in the regulation of cardiac contractility and blood pressure in mice. At the age of 16 days, the relatively healthy Zbtb20-null mice exhibited hypotension without obvious change of heart rate or other evidence for heart failure. Moreover, Zbtb20 deletion led to a marked reduction in heart size, left ventricular wall thickness, and cell size of cardiomyocytes, which was largely proportional to the decreased body growth. Notably, echocardiographic and hemodynamic analyses showed that cardiac contractility was greatly impaired in the absence of ZBTB20. Mechanistically, ZBTB20 deficiency decreased cardiac ATP contents, and compromised the enzyme activity of mitochondrial complex I in heart as well as L-type calcium current density in cardiomyocytes. Furthermore, the developmental activation of some mitochondrial function-related genes was significantly attenuated in Zbtb20-null myocardium, which included Hspb8, Ckmt2, Cox7a1, Tfrc, and Ogdhl. Put together, these results suggest that ZBTB20 plays a crucial role in the regulation of heart development, energy metabolism, and contractility.
锌指蛋白 ZBTB20 调节多个系统的发育和代谢,并且对于小鼠的出生后存活是必需的。然而,其在心血管系统中的潜在作用仍未被定义。在这里,我们证明 ZBTB20 对于小鼠的心肌收缩力和血压的调节起着关键作用。在 16 天大时,相对健康的 Zbtb20 敲除小鼠表现出低血压,而心率或其他心力衰竭的迹象没有明显改变。此外,Zbtb20 的缺失导致心脏大小、左心室壁厚度和心肌细胞大小的显著减小,这与身体生长的减少基本成正比。值得注意的是,超声心动图和血液动力学分析表明,在没有 ZBTB20 的情况下,心肌收缩力大大受损。从机制上讲,ZBTB20 的缺乏降低了心脏中的 ATP 含量,并损害了心脏中线粒体复合物 I 的酶活性以及心肌细胞中的 L 型钙电流密度。此外,Zbtb20 敲除心肌中线粒体功能相关基因的发育激活显著减弱,包括 Hspb8、Ckmt2、Cox7a1、Tfrc 和 Ogdhl。综上所述,这些结果表明 ZBTB20 在心脏发育、能量代谢和收缩性的调节中起着至关重要的作用。