Saiki Y, El-Hayek R, Ikemoto N
Boston Biomedical Research Institute, Boston, Massachusetts 02114, USA.
J Biol Chem. 1999 Mar 19;274(12):7825-32. doi: 10.1074/jbc.274.12.7825.
Our previous study (El-Hayek, R., Antoniu, B., Wang, J. P., Hamilton, S. L., and Ikemoto, N. (1995) J. Biol. Chem. 270, 22116-22118) suggested the hypothesis that skeletal muscle-type excitation-contraction coupling is regulated by two domains (activating and blocking) of the II-III loop of the dihydropyridine receptor alpha1 subunit. We investigated this hypothesis by examining conformational changes in the ryanodine receptor induced by synthetic peptides and by transverse tubular system (T-tubule) depolarization. Peptide A, corresponding to the Thr671-Leu690 region, rapidly changed the ryanodine receptor conformation from a blocked state (low fluorescence of the conformational probe, methyl coumarin acetamide, attached specifically to the ryanodine receptor) to an activated state (high methyl coumarin acetamide fluorescence) as T-tubule depolarization did. Peptide C, corresponding to the Glu724-Pro760 region, blocked both conformational changes induced by peptide A and T-tubule depolarization. Its ability to block peptide A-induced and depolarization-induced activation was considerably impaired by replacing the portion of peptide C corresponding to the Phe725-Pro742 region of the loop with cardiac muscle-type sequence. These results are consistent with the model that depolarization-induced activation of excitation-contraction coupling and blocking/repriming are mediated by the peptide A region and the peptide C region (containing the critical Phe725-Pro742 sequence) of the II-III loop, respectively.
我们之前的研究(El-Hayek, R., Antoniu, B., Wang, J. P., Hamilton, S. L., 和 Ikemoto, N. (1995) J. Biol. Chem. 270, 22116 - 22118)提出了一个假说,即骨骼肌型兴奋 - 收缩偶联受二氢吡啶受体α1亚基II - III环的两个结构域(激活和阻断)调控。我们通过检测合成肽和横管系统(T管)去极化诱导的兰尼碱受体构象变化来研究这一假说。对应于Thr671 - Leu690区域的肽A,能像T管去极化一样,迅速将兰尼碱受体构象从阻断状态(构象探针甲基香豆素乙酰胺特异性附着于兰尼碱受体时的低荧光)转变为激活状态(高甲基香豆素乙酰胺荧光)。对应于Glu724 - Pro760区域的肽C,可阻断肽A和T管去极化诱导的两种构象变化。用心肌型序列替换肽C中对应于环的Phe725 - Pro⁷⁴²区域的部分后,其阻断肽A诱导的激活和去极化诱导的激活的能力显著受损。这些结果与以下模型一致,即去极化诱导的兴奋 - 收缩偶联激活以及阻断/再引发分别由II - III环的肽A区域和肽C区域(包含关键的Phe725 - Pro742序列)介导。