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首页> 外文期刊>Neurochemical research >Effects of calmodulin and Ca2+ channel blockers on omega-conotoxin GVIA binding to crude membranes from alpha1B subunit (Cav2.2) expressed BHK cells and mice brain lacking the alpha1B subunits.
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Effects of calmodulin and Ca2+ channel blockers on omega-conotoxin GVIA binding to crude membranes from alpha1B subunit (Cav2.2) expressed BHK cells and mice brain lacking the alpha1B subunits.

机译:钙调蛋白和Ca2 +通道阻滞剂对ω-芋螺毒素GVIA与来自alpha1B亚基(Cav2.2)表达的粗膜结合的BHK细胞和缺乏alpha1B亚基的小鼠大脑的影响。

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Characteristics for the specific binding of 125I-omega-CTX GVIA and 125I-omega-CTX MVIIC to crude membranes from BHKN101 cells expressing the alpha1B subunits of Cav2.2 channels and from mice brain lacking the alpha1B subunits of Cav2.2 channels, particularly, the effects of CaM and various Ca2+ channel blockers on these specific bindings were investigated. Specific binding of 125I-omega-CTX GVIA to the crude membranes from BHKN101 cells was observed, but not from control BHK6 cells. omega-CTX GVIA, omega-CTX MVIIC and omega-CTX SVIB inhibited the specific binding of 125I-omega-CTX GVIA to crude membranes from BHKN101 cells, and the IC50 values for omega-CTXGVIA, omega-CTX MVIIC and omega-CTX SVIB were 0.07, 8.5 and 1.7 nM, respectively. However, omega-agatoxin IVA and calciseptine at concentrations of 10(-9)-10(-6) M did not inhibit specific binding. Specific binding was also about 80% inhibited by 20 microg protein/ml CaM. The amount of 125I-omega-CTX GVIA (30 pM) specifically bound to membranes frombrain of knockout mice lacking alpha1B subunits of Cav2.2 channels was about 30% of that to the crude membranes from brain of wild-type. On the other hand, specific binding of 125I-omega-CTX MVIIC (200 pM) was observed on the crude membranes of both BHKN101 and control BHK6 cells. The specific binding of 125I-omega-CTX MVIIC (200 pM) was not inhibited by omega-CTX GVIA and omega-CTX SVIB, and also omega-Aga IVA and calciseptine at concentrations of 10(-9)-10(-7) M, although specific binding was almost completely dose dependently inhibited by non-radiolabeled omega-CTX MVIIC (IC50 value was about 0.1 nM). 20 microg protein/ml CaM did not inhibit specific binding. Therefore, these results suggest that BHKN101 cells have a typical Cav2.2 channels which are also inhibited by CaM and have not specific binding sites for omega-CTX MVIIC, although omega-CTX MVIIC is a blocker for both Cav2.1 (alpha1A; P/Q-type) and Cav2.2 channels.
机译:125I-omega-CTX GVIA和125I-omega-CTX MVIIC与表达Cav2.2通道alpha1B亚基的BHKN101细胞和缺少Cav2.2通道alpha1B亚基的小鼠大脑的粗膜的特异性结合特征研究了CaM和各种Ca2 +通道阻滞剂对这些特异性结合的影响。观察到125I-ω-CTXGVIA与BHKN101细胞的粗膜有特异性结合,但与对照BHK6细胞没有特异性结合。 omega-CTX GVIA,omega-CTX MVIIC和omega-CTX SVIB抑制125I-omega-CTX GVIA与BHKN101细胞的粗膜的特异性结合以及omega-CTXGVIA,omega-CTX MVIIC和omega-CTX SVIB的IC50值分别为0.07、8.5和1.7 nM。但是,浓度为10(-9)-10(-6)M的欧米加-琼脂毒素IVA和钙环素不会抑制特异性结合。 20微克蛋白质/毫升CaM也抑制了约80%的特异性结合。与缺乏Cav2.2通道的alpha1B亚基的基因敲除小鼠的大脑膜特异性结合的125I-ω-CTXGVIA(30 pM)的量约为野生型脑的粗膜的30%。另一方面,在BHKN101和对照BHK6细胞的粗膜上均观察到125I-ω-CTXMVIIC(200 pM)的特异性结合。 125I-omega-CTX MVIIC(200 pM)的特异性结合不受浓度为10(-9)-10(-7)的omega-CTX GVIA和omega-CTX SVIB以及omega-Aga IVA和钙环素的抑制M,尽管特异性结合几乎被非放射性标记的omega-CTX MVIIC剂量依赖性地抑制(IC50值约为0.1 nM)。 20微克蛋白质/毫升CaM不会抑制特异性结合。因此,这些结果表明,BHKN101细胞具有一个典型的Cav2.2通道,该通道也受到CaM的抑制,并且对ω-CTXMVIIC没有特异性结合位点,尽管ω-CTXMVIIC对两种Cav2.1(alpha1A; P / Q型)和Cav2.2通道。

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