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蛋白激酶Cα介导抗心律失常肽对缝隙连接电导的作用。

Protein kinase Calpha mediates the effect of antiarrhythmic peptide on gap junction conductance.

作者信息

Dhein S, Weng S, Grover R, Tudyka T, Gottwald M, Schaefer T, Polontchouk L

机构信息

Institute of Pharmacology, University of Halle, Germany.

出版信息

Cell Commun Adhes. 2001;8(4-6):257-64. doi: 10.3109/15419060109080734.

Abstract

We investigated the effects of the antiarrhythmic peptide AAP10 (GAG-4Hyp-PY-CONH2, 50 nM) on pairs of adult guinea pig cardiomyocytes and on pairs of HeLa-cells transfected with rat connexin43 (Cx43). Using double cell voltage clamp technique in cardiomyocytes under control conditions, gap junction conductance (Gj) steadily decreased (by -0.3 to -0.4 nS/min). In contrast, 50 nM AAP10 significantly enhanced Gj (by +0.22 to +0.29 nS/min). This effect of AAP10 could be significantly antagonized by bisindolylmaleimide I (BIM), and by the protein kinase C (PKC) subtype-specific inhibitors HBDDE (PKCgamma and -alpha) and CGP 54345 (PKCalpha). In HeLa-Cx43 cells we found similar electrophysiological effects of AAP10. For further analysis, we incubated HeLa-Cx43 cells with [32P]orthophosphate (0.05 mCi/ml) for 4 h at 37 degrees C followed by addition of 50 nM AAP10 for 15 min. We found that incorporation of 32P into Cx43 was significantly enhanced in the presence of AAP10, which was completely inhibited in presence of BIM. PKC enzyme-linked immunosorbent assay (ELISA) revealed significant activation of PKC by AAP10 in HeLa-Cx43 cells, which could be inhibited by HBDDE and CGP 54345. Finally, a binding study using [14C]-AAP10 as radioligand was performed. We found a saturable binding of [14C]-AAP10 with a KD of 0.88 nM to cardiac membrane preparations. For assessment of the antiarrhythmic activity in anesthetized rats, we infused aconitine until the occurrence of ventricular fibrillation (VF). The aconitine dose required for initiation of VF was significantly enhanced in the presence of AAP10. In conclusion; AAP10 increases Gj in both adult cardiomyocytes and transfected HeLa-Cx43 cells. AAP10 leads to enhanced phosphorylation of Cx43 via activation of PKCalpha. A membrane receptor exists for antiarrhythmic peptides.

摘要

我们研究了抗心律失常肽AAP10(GAG - 4Hyp - PY - CONH2,50 nM)对成年豚鼠心肌细胞对以及对转染了大鼠连接蛋白43(Cx43)的HeLa细胞对的影响。在对照条件下,使用心肌细胞双细胞电压钳技术,缝隙连接电导(Gj)稳步下降(每分钟下降 - 0.3至 - 0.4 nS)。相比之下,50 nM的AAP10显著增强了Gj(每分钟增加 + 0.22至 + 0.29 nS)。AAP10的这种作用可被双吲哚马来酰亚胺I(BIM)以及蛋白激酶C(PKC)亚型特异性抑制剂HBDDE(PKCγ和 - α)和CGP 54345(PKCα)显著拮抗。在HeLa - Cx43细胞中,我们发现AAP10具有类似的电生理效应。为了进一步分析,我们将HeLa - Cx43细胞与[32P]正磷酸盐(0.05 mCi/ml)在37℃下孵育4小时,然后加入50 nM的AAP10孵育15分钟。我们发现,在AAP10存在的情况下,32P掺入Cx43显著增强,而在BIM存在的情况下则完全被抑制。PKC酶联免疫吸附测定(ELISA)显示,AAP10在HeLa - Cx43细胞中显著激活了PKC,这可被HBDDE和CGP 54345抑制。最后,进行了一项以[14C] - AAP10作为放射性配体的结合研究。我们发现[14C] - AAP10与心脏膜制剂具有可饱和结合,KD为0.88 nM。为了评估在麻醉大鼠中的抗心律失常活性,我们注入乌头碱直至发生室颤(VF)。在AAP10存在的情况下,引发VF所需的乌头碱剂量显著增加。总之,AAP10增加成年心肌细胞和转染的HeLa - Cx43细胞中的Gj。AAP10通过激活PKCα导致Cx43磷酸化增强。抗心律失常肽存在膜受体。

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