HAX-1 regulates SERCA2a oxidation and degradation

被引:20
作者
Bidwell, Philip A. [1 ]
Liu, Guan-Sheng [1 ]
Nagarajan, Narayani [2 ]
Lam, Chi Keung [1 ]
Haghighi, Kobra [1 ]
Gardner, George [1 ]
Cai, Wen-Feng [1 ]
Zhao, Wen [1 ]
Mugge, Luke [1 ]
Vafiadaki, Elizabeth [5 ]
Sanoudou, Despina [5 ,6 ]
Rubinstein, Jack [3 ]
Lebeche, Djamel [4 ]
Hajjar, Roger [4 ]
Sadoshima, Junichi [2 ]
Kranias, Evangelia G. [1 ,5 ]
机构
[1] Univ Cincinnati, Coll Med, Dept Pharmacol & Syst Physiol, Cincinnati, OH 45220 USA
[2] Rutgers New Jersey Med Sch, Dept Cell Biol & Mol Med, Newark, NJ USA
[3] Univ Cincinnati, Coll Med, Div Cardiol, Internal Med, Cincinnati, OH USA
[4] Ichan Sch Med Mt Sinai, Cardiovasc Res Ctr, New York, NY USA
[5] Acad Athens, Biomed Res Fdn, Mol Biol Div, Athens, Greece
[6] Univ Athens, Med Sch, Attikon Hosp, Dept Internal Med 4, Athens, Greece
关键词
Heart; HAX-1; SERCA2a; NOX4; Oxidative modification; Ischemia reperfusion; Proteolysis; POSTISCHEMIC CARDIAC-FUNCTION; ANTI-APOPTOTIC PROTEIN; NADPH OXIDASE 4; UP-REGULATION; ISCHEMIA/REPERFUSION INJURY; VENTRICULAR-ARRHYTHMIAS; RETICULUM CA2+-ATPASE; MYOCARDIAL-INFARCTION; MITOCHONDRIAL PROTEIN; ACTIVATES SERCA;
D O I
10.1016/j.yjmcc.2017.11.014
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Ischemia/reperfusion injury is associated with contractile dysfunction and increased cardiomyocyte death. Overexpression of the hematopoietic lineage substrate-l-associated protein X-1 (HAX-1) has been shown to protect from cellular injury but the function of endogenous HAX-1 remains obscure due to early lethality of the knockout mouse. Herein we generated a cardiac-specific and inducible HAX-1 deficient model, which uncovered an unexpected role of HAX-1 in regulation of sarco/endoplasmic reticulum Ca-ATPase (SERCA2a) in ischemia/reperfusion injury. Although ablation of HAX-1 in the adult heart elicited no morphological alterations under non-stress conditions, it diminished contractile recovery and increased infarct size upon ischemia/reperfusion injury. These detrimental effects were associated with increased loss of SERCA2a. Enhanced SERCA2a degradation was not due to alterations in calpain and calpastatin levels or calpain activity. Conversely, HAX-1 overexpression improved contractile recovery and maintained SERCA2a levels. The regulatory effects of HAX-1 on SERCA2a degradation were observed at multiple levels, including intact hearts, isolated cardiomyocytes and sarcoplasmic reticulum microsomes. Mechanistically, HAX-1 ablation elicited increased production of reactive oxygen species at the sarco/endoplasic reticulum compartment, resulting in SERCA2a oxidation and a predisposition to its proteolysis. This effect may be mediated by NAPDH oxidase 4 (NOX4), a novel binding partner of HAX-1. Accordingly, NOX inhibition with apocynin abrogated the effects of HAX-1 ablation in hearts subjected to ischemia/reperfusion injury. Taken together, our findings reveal a role of HAX-1 in the regulation of oxidative stress and SERCA2a degradation, implicating its importance in calcium homeostasis and cell survival pathways.
引用
收藏
页码:220 / 233
页数:14
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