Liu Dan, Hewawasam Ruwani, Pace Suzy M, Gallant Esther M, Casarotto Marco G, Dulhunty Angela F, Board Philip G
John Curtin School of Medical Research, Australian National University, Canberra, Australia.
Biochem Pharmacol. 2009 Apr 1;77(7):1181-93. doi: 10.1016/j.bcp.2008.12.024. Epub 2009 Jan 13.
The muscle specific glutathione transferase GSTM2-2 inhibits the activity of cardiac ryanodine receptor (RyR2) calcium release channels with high affinity and activates skeletal RyR (RyR1) channels with lower affinity. To determine which overall region of the GSTM2-2 molecule supports binding to RyR2, we examined the effects of truncating GSTM2-2 on its ability to alter Ca(2+) release from sarcoplasmic reticulum (SR) vesicles and RyR channel activity. The C-terminal half of GSTM2-2 which lacks the critical GSH binding site supported the inhibition of RyR2, but did not support activation of RyR1. Smaller fragments of GSTM2-2 indicated that the C-terminal helix 6 was crucial for the action of GSTM2-2 on RyR2. Only fragments containing the helix 6 sequence inhibited Ca(2+) release from cardiac SR. Single RyR2 channels were strongly inhibited by constructs containing the helix 6 sequence in combination with adjacent helices (helices 5-8 or 4-6). Fragments containing helices 5-6 or helix 6 sequences alone had less well-defined effects. Chemical cross-linking indicated that C-terminal helices 5-8 bound to RyR2, but not RyR1. Structural analysis with circular dichroism showed that the helical content was greater in the longer helix 6 containing constructs, while the helix 6 sequence alone had minimal helical structure. Therefore the active centre of GSTM2-2 for inhibition of cardiac RyR2 involves the helix 6 sequence and the helical nature of this region is essential for its efficacy. GSTM2-2 helices 5-8 may provide the basis for RyR2-specific compounds for experimental and therapeutic use.
肌肉特异性谷胱甘肽转移酶GSTM2-2以高亲和力抑制心肌兰尼碱受体(RyR2)钙释放通道的活性,并以较低亲和力激活骨骼肌RyR(RyR1)通道。为了确定GSTM2-2分子的哪个整体区域支持与RyR2的结合,我们研究了截短GSTM2-2对其改变肌浆网(SR)囊泡中Ca(2+)释放能力和RyR通道活性的影响。GSTM2-2的C端半段缺乏关键的谷胱甘肽结合位点,它支持对RyR2的抑制,但不支持对RyR1的激活。GSTM2-2的较小片段表明,C端螺旋6对GSTM2-2作用于RyR2至关重要。只有包含螺旋6序列的片段才能抑制心肌SR中的Ca(2+)释放。含有螺旋6序列与相邻螺旋(螺旋5-8或4-6)组合的构建体可强烈抑制单个RyR2通道。单独含有螺旋5-6或螺旋6序列的片段的作用不太明确。化学交联表明,C端螺旋5-8与RyR2结合,但不与RyR1结合。圆二色性结构分析表明,在较长的含螺旋6构建体中螺旋含量更高,而单独的螺旋6序列具有最小的螺旋结构。因此,GSTM2-2抑制心肌RyR2的活性中心涉及螺旋6序列,该区域的螺旋性质对其功效至关重要。GSTM2-2的螺旋5-8可能为用于实验和治疗的RyR2特异性化合物提供基础。