Blockade of Hsp20 Phosphorylation Exacerbates Cardiac Ischemia/Reperfusion Injury by Suppressed Autophagy and Increased Cell Death

被引:137
作者
Qian, Jiang
Ren, Xiaoping
Wang, Xiaohong
Zhang, Pengyuan
Jones, W. Keith
Molkentin, Jeffery D. [2 ]
Fan, Guo-Chang
Kranias, Evangelia G. [1 ]
机构
[1] Univ Cincinnati, Dept Pharmacol & Cell Biophys, Coll Med, Cincinnati, OH 45267 USA
[2] Cincinnati Childrens Hosp, Howard Hughes Med Inst, Med Ctr, Cincinnati, OH USA
关键词
apoptosis; myocardial infarction; autophagy; heat shock protein; HEAT-SHOCK-PROTEIN; MYOCYTE APOPTOSIS; PROTECTIVE ROLE; TNF-ALPHA; EXPRESSION; MECHANISMS; RAT; OLIGOMERIZATION; LOCALIZATION; INHIBITOR-1;
D O I
10.1161/CIRCRESAHA.109.200378
中图分类号
R5 [内科学];
学科分类号
100201 [内科学];
摘要
Rationale: The levels of a small heat shock protein (Hsp)20 and its phosphorylation are increased on ischemic insults, and overexpression of Hsp20 protects the heart against ischemia/reperfusion injury. However, the mechanism underlying cardioprotection of Hsp20 and especially the role of its phosphorylation in regulating ischemia/reperfusion-induced autophagy, apoptosis, and necrosis remain to be clarified. Objective: Herein, we generated a cardiac-specific overexpression model, carrying nonphosphorylatable Hsp20, where serine 16 was substituted with alanine (Hsp20(S16A)). By subjecting this model to ischemia/reperfusion, we addressed whether: (1) the cardioprotective effects of Hsp20 are associated with serine 16 phosphorylation; (2) blockade of Hsp20 phosphorylation influences the balance between autophagy and cell death; and (3) the aggregation pattern of Hsp20 is altered by its phosphorylation. Methods and Results: Our results demonstrated that Hsp20(S16A) hearts were more sensitive to ischemia/reperfusion injury, evidenced by lower recovery of contractile function and increased necrosis and apoptosis, compared with non-TG hearts. Interestingly, autophagy was activated in non-TG hearts but significantly inhibited in Hsp20(S16A) hearts following ischemia/reperfusion. Accordingly, pretreatment of Hsp20(S16A) hearts with rapamycin, an activator of autophagy, resulted in improvement of functional recovery, compared with saline-treated Hsp20(S16A) hearts. Furthermore, on ischemia/reperfusion, the oligomerization pattern of Hsp20 appeared to shift to higher aggregates in Hsp20(S16A) hearts. Conclusions: Collectively, these data indicate that blockade of Ser16-Hsp20 phosphorylation attenuates the cardioprotective effects of Hsp20 against ischemia/reperfusion injury, which may be attributable to suppressed autophagy and increased cell death. Therefore, phosphorylation of Hsp20 at serine 16 may represent a potential therapeutic target in ischemic heart disease. (Circ Res. 2009;105:1223-1231.)
引用
收藏
页码:1223 / +
页数:20
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