Inhibition by pertussis toxin of guanyl nucleotides exchange on transducin in bovine rod cell membranes.

V O Rybin, A A Gureeva, V A Tkachuk
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引用次数: 1

Abstract

The effect of pertussis toxin on GTP-binding protein of bovine rod cell outer segments (transducin) was studied. Pertussis toxin was shown to ADP ribosylate either alpha subunit of free transducin or transducin-GDP complex, whereas GTP and its analogue Gpp(NH)p strongly inhibit ADP ribosylation of transducin. Pertussis toxin inhibits rod outer segment membrane GTPase and GTPase of homogeneous transducin by 40% and 70-80%, respectively. Activation of rod cell cyclic nucleotide phosphodiesterase by transducin is reduced after its preincubation with pertussis toxin. In transducin modified by pertussis toxin, 83% of GDP becomes tightly bound and cannot be exchanged with Gpp(NH)p. The stabilization of complex transducin-GDP after ADP ribosylation can explain the inhibitory effect of pertussis toxin on GTP hydrolysis by transducin, and on phosphodiesterase activation by guanyl nucleotides.

百日咳毒素对牛棒细胞膜上鸟嘌呤核苷酸交换的抑制作用。
研究了百日咳毒素对牛棒细胞外段gtp结合蛋白(转导蛋白)的影响。结果表明,百日毒可以使自由转导蛋白的α亚基或转导- gdp复合物的ADP核糖化,而GTP及其类似物Gpp(NH)p强烈抑制转导蛋白的ADP核糖化。百日咳毒素对棒外段膜GTPase和均质转导蛋白GTPase的抑制作用分别为40%和70-80%。经百日咳毒素预孵育后,经转导蛋白激活的棒状细胞环核苷酸磷酸二酯酶减少。在经百日咳毒素修饰的转导蛋白中,83%的GDP紧密结合,不能与Gpp(NH)p交换。ADP核糖基化后复杂转导- gdp的稳定可以解释百日咳毒素对转导蛋白水解GTP和鸟苷核苷酸活化磷酸二酯酶的抑制作用。
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