Liou Ying-Ming, Chao Huan-Lu
Department of Life Sciences, National Chung-Hsing University, Taichung, Taiwan.
Biochim Biophys Acta. 2007 Apr;1774(4):466-73. doi: 10.1016/j.bbapap.2007.01.004. Epub 2007 Feb 9.
Recent structural studies of the troponin (Tn) core complex have shown that the regulatory head containing the N-lobe of TnC is connected to the IT arm by a flexible linker of TnC. The IT arm is a long coiled-coil formed by alpha-helices of TnI and TnT, plus the C-lobe of TnC. The TnT is thought to play a pivotal role in the linking of Ca(2+) -triggered conformational changes in thin filament regulatory proteins to the activation of cross-bridge cycling. However, a functional domain at the C-terminus of TnT is missing from the Tn core complex. In this study, we intended to determine the proximity relationship between the central helix of TnC and the TnT C-terminus in the binary and the ternary complex with and without Ca2+ by using pyrene excimer fluorescence spectroscopy and fluorescence resonance energy transfer. Chicken fast skeletal TnC contains a Cys102 at the E helix, while TnT has a Cys264 at its C-terminus. These two cysteines were specifically labeled with sulfhydryl-reactive fluorescence probes. The measured distance in the binary complex was about 19 Angstroms and slightly increased when they formed the ternary complex with TnI (20 Angstroms). Upon Ca2+ binding the distance was not affected in the binary complex but increased by approximately 4 Angstroms in the ternary complex. These results suggest that TnI plays an essential role in the Ca(2+) -mediated change in the spatial relationship between the C-lobe of TnC and the C-terminus of TnT.
最近对肌钙蛋白(Tn)核心复合物的结构研究表明,包含TnC N叶的调节头部通过TnC的柔性连接子与IT臂相连。IT臂是由TnI和TnT的α螺旋以及TnC的C叶形成的长卷曲螺旋。TnT被认为在细肌丝调节蛋白中Ca(2+)触发的构象变化与横桥循环激活的联系中起关键作用。然而,Tn核心复合物中缺少TnT C末端的功能域。在本研究中,我们打算通过芘激基缔合物荧光光谱法和荧光共振能量转移来确定在有和没有Ca2+的情况下,二元和三元复合物中TnC的中央螺旋与TnT C末端之间的接近关系。鸡快肌TnC在E螺旋处含有一个Cys102,而TnT在其C末端有一个Cys264。这两个半胱氨酸用巯基反应性荧光探针进行了特异性标记。二元复合物中测得的距离约为19埃,当它们与TnI形成三元复合物时略有增加(20埃)。Ca2+结合后,二元复合物中的距离不受影响,但三元复合物中的距离增加了约4埃。这些结果表明,TnI在Ca(2+)介导的TnC C叶与TnT C末端空间关系变化中起重要作用。