Pinz Ilka, Robbins Jeffrey, Rajasekaran Namakkal S, Benjamin Ivor J, Ingwall Joanne S
NMR Laboratory for Physiological Chemistry, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115, USA.
FASEB J. 2008 Jan;22(1):84-92. doi: 10.1096/fj.07-8130com. Epub 2007 Sep 10.
CryAB and HSPB2 are small heat shock proteins constitutively expressed in the heart. CryAB protects cytoskeletal organization and intermediate filament assembly; the functions of HSPB2 are unknown. The promoters of CryAB and HSPB2 share regulatory elements, making identifying their separate functions difficult. Here, using a genetic approach, we report distinct roles for these sHSPs, with CryAB protecting mechanical properties and HSPB2 protecting energy reserve. Isolated hearts of wild type mice (WT), mice lacking both sHSPs (DKO), WT mice overexpressing mouse CryAB protein (mCryAB(Tg)), and mice with no HSPB2 made by crossing DKO with mCryAB(Tg) (DKO/mCryAB(Tg)) were stressed with either ischemia/reperfusion or inotropic stimulation. Contractile performance and energetics were measured using 31P NMR spectroscopy. Ischemia/reperfusion caused severe diastolic dysfunction in DKO hearts. Recovery of [ATP] and [PCr] during reperfusion was impaired only in DKO/mCryAB(Tg). During inotropic stimulation, DKO/mCryAB(Tg) showed blunted systolic and diastolic function and revealed massive energy wasting on acute stress: |deltaG(-ATP)| decreased in DKO by 6.4 +/- 0.7 and in DKO/mCryAB(Tg) by 5.5 +/- 0.8 kJ/mol compared with only approximately 3.3 kJ/mol in WT and mCryAB(Tg). Thus, CryAB and HSPB2 proteins play nonredundant roles in the heart, CryAB in structural remodeling and HSPB2 in maintaining energetic balance.
CryAB和HSPB2是在心脏中组成性表达的小热休克蛋白。CryAB可保护细胞骨架组织和中间丝组装;HSPB2的功能尚不清楚。CryAB和HSPB2的启动子共享调控元件,这使得确定它们各自的功能变得困难。在这里,我们使用遗传方法报告了这些小热休克蛋白的不同作用,CryAB保护机械性能,HSPB2保护能量储备。用野生型小鼠(WT)、缺乏这两种小热休克蛋白的小鼠(DKO)、过表达小鼠CryAB蛋白的WT小鼠(mCryAB(Tg))以及通过将DKO与mCryAB(Tg)杂交产生的无HSPB2的小鼠(DKO/mCryAB(Tg))的离体心脏进行缺血/再灌注或变力刺激。使用31P核磁共振波谱法测量收缩性能和能量代谢。缺血/再灌注导致DKO心脏出现严重的舒张功能障碍。仅在DKO/mCryAB(Tg)中,再灌注期间[ATP]和[PCr]的恢复受损。在变力刺激期间,DKO/mCryAB(Tg)表现出收缩和舒张功能减弱,并在急性应激时显示出大量能量消耗:与WT和mCryAB(Tg)中仅约3.3 kJ/mol相比,DKO中|deltaG(-ATP)|降低了6.4±0.7,DKO/mCryAB(Tg)中降低了5.5±0.8 kJ/mol。因此,CryAB和HSPB2蛋白在心脏中发挥非冗余作用,CryAB参与结构重塑,HSPB2参与维持能量平衡。