Department of Pharmacology and Toxicology, and Center for Excellence in Cardiovascular-Renal Research, The University of Mississippi Medical Center, School of Medicine, Jackson, MS, USA.
Hypertens Res. 2013 Jun;36(6):496-503. doi: 10.1038/hr.2012.223. Epub 2013 Jan 31.
STAT3 is involved in protection of the heart provided by ischemic preconditioning. However, the role of this transcription factor in the heart in chronic stresses such as hypertension has not been defined. We assessed whether STAT3 is important in hypertension-induced cardiac remodeling using mice with reduced STAT3 activity due to a S727A mutation (SA/SA). Wild type (WT) and SA/SA mice received angiotensin (ANG) II or saline for 17 days. ANG II increased mean arterial and systolic pressure in SA/SA and WT mice, but cardiac levels of cytokines associated with heart failure were increased less in SA/SA mice. Unlike WT mice, hearts of SA/SA mice showed signs of developing systolic dysfunction as evidenced by reduction in ejection fraction and fractional shortening. In the left ventricle of both WT and SA/SA mice, ANG II induced fibrosis. However, fibrosis in SA/SA mice appeared more extensive and was associated with loss of myocytes. Cardiac hypertrophy as indexed by heart to body weight ratio and left ventricular anterior wall dimension during diastole was greater in WT mice. In WT+ANG II mice there was an increase in the mass of individual myofibrils. In contrast, cardiac myocytes of SA/SA+ANG II mice showed a loss in myofibrils and myofibrillar mass density was decreased during ANG II infusion. Our findings reveal that STAT3 transcriptional activity is important for normal cardiac myocyte myofibril morphology. Loss of STAT3 may impair cardiac function in the hypertensive heart due to defective myofibrillar structure and remodeling that may lead to heart failure.
STAT3 参与了缺血预处理对心脏的保护作用。然而,这种转录因子在高血压等慢性应激下对心脏的作用尚未确定。我们评估了 STAT3 在高血压诱导的心脏重构中的重要性,使用由于 S727A 突变(SA/SA)而导致 STAT3 活性降低的小鼠。野生型(WT)和 SA/SA 小鼠接受血管紧张素(ANG)II 或生理盐水 17 天。ANG II 增加了 SA/SA 和 WT 小鼠的平均动脉压和收缩压,但 SA/SA 小鼠心脏中与心力衰竭相关的细胞因子水平增加较少。与 WT 小鼠不同,SA/SA 小鼠的心脏显示出收缩功能障碍的迹象,表现为射血分数和缩短分数降低。在 WT 和 SA/SA 小鼠的左心室中,ANG II 诱导了纤维化。然而,SA/SA 小鼠的纤维化似乎更为广泛,并伴有肌细胞丢失。WT 小鼠的心脏重量与体重比和舒张期左心室前壁厚度表示的心肌肥厚更大。在 WT+ANG II 小鼠中,单个肌原纤维的质量增加。相比之下,在 ANG II 输注期间,SA/SA+ANG II 小鼠的心肌细胞失去了肌原纤维,肌原纤维质量密度降低。我们的研究结果表明,STAT3 转录活性对于正常心肌细胞肌原纤维形态至关重要。STAT3 的缺失可能会由于肌原纤维结构和重构的缺陷而损害高血压心脏的心脏功能,从而导致心力衰竭。