Ii N, Kuniyasu A, Kawahara K, Shibano T, Schwartz A, Nakayama H
Faculty of Pharmaceutical Sciences, Kumamoto University, Japan.
FEBS Lett. 1998 Dec 11;441(1):83-7. doi: 10.1016/s0014-5793(98)01536-1.
We have previously identified the binding region of a new Ca2+ antagonist semotiadil in the skeletal muscle Ca2+ channel. To the same semotiadil derivatives, the cardiac counterpart showed distinct and different binding characteristics: semotiadil and its photoaffinity analog D51-4700 inhibited [3H]PN200-110 binding to cardiac membrane preparations with IC50 values of 13-20 microM, which are 10 times higher than those in skeletal muscle. Hill slopes of the binding inhibition were 0.94-1.0 for the cardiac channels compared to 0.63-0.67 for the skeletal muscle channels. A possible explanation for the difference is that the semotiadil binding site is differently conferred in cardiac and skeletal muscle Ca2+ channels. To reveal this within the primary structure, photoaffinity labeling of cardiac membranes was employed. [3H]D51-4700 was photo-incorporated in several polypeptides but only the alpha1 subunit of the Ca2+ channel was photolabeled in a specific manner. Antibody mapping of the [3H]D51-4700-labeled alpha1 subunit with several anti-peptide antibodies revealed that the labeled site was located solely in a peptide fragment between Cys1461 and Lys1529. This region encompasses the labeled site of skeletal muscle, but contains several non-identical amino acid residues, which may participate in expressing different binding characteristics between the two muscle type Ca2+ channels.
我们之前已经确定了新型钙离子拮抗剂塞莫替地尔在骨骼肌钙离子通道中的结合区域。对于相同的塞莫替地尔衍生物,其在心脏对应的通道中表现出截然不同的结合特性:塞莫替地尔及其光亲和类似物D51 - 4700抑制[3H]PN200 - 110与心脏膜制剂的结合,IC50值为13 - 20微摩尔,这比在骨骼肌中的值高10倍。与骨骼肌通道的结合抑制的希尔斜率为0.63 - 0.67相比,心脏通道的结合抑制的希尔斜率为0.94 - 1.0。这种差异的一个可能解释是,塞莫替地尔结合位点在心脏和骨骼肌钙离子通道中的赋予方式不同。为了在一级结构中揭示这一点,采用了心脏膜的光亲和标记。[3H]D51 - 4700以光掺入的方式进入几种多肽,但只有钙离子通道的α1亚基以特异性方式被光标记。用几种抗肽抗体对[3H]D51 - 4700标记的α1亚基进行抗体定位显示,标记位点仅位于半胱氨酸1461和赖氨酸1529之间的一个肽片段中。该区域包含骨骼肌的标记位点,但含有几个不同的氨基酸残基,这些残基可能参与表达两种肌肉类型钙离子通道之间不同的结合特性。