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氟化物和镁离子介导的非铝依赖性G蛋白激活机制。31P核磁共振光谱和荧光动力学研究。

The mechanism of aluminum-independent G-protein activation by fluoride and magnesium. 31P NMR spectroscopy and fluorescence kinetic studies.

作者信息

Antonny B, Sukumar M, Bigay J, Chabre M, Higashijima T

机构信息

Institut de Pharmacologie Moléculaire et Cellulaire, Centre National de la Recherche Scientifique, Valbonne, France.

出版信息

J Biol Chem. 1993 Feb 5;268(4):2393-402.

PMID:8381408
Abstract

With magnesium present, fluoride and aluminum ions activate heterotrimeric G-proteins by forming AlFx complexes that mimic the gamma phosphate of a GTP. We report compelling evidence for a newly proposed process of G-protein activation by fluoride and magnesium, without Al3+. With millimolar Mg2+ and F-, Gs and Gt activate adenylylcyclase and cGMP-phosphodiesterase, respectively. In 31P NMR, addition of magnesium to Gi1 alpha GDP or Gt alpha GDP solutions containing fluoride, but no Al3+, modifies the chemical shift of the GDP beta phosphorus, suggesting that magnesium interacts with the beta phosphate. Titration of this effect indicates that two Mg2+ are bound per G alpha. Biphasic activation kinetics, monitored by G alpha tryptophan fluorescence, suggests the rapid binding of one Mg2+ to G alpha GDP and the slow association of another Mg2+, in correlation with fluoride binding and G alpha activation. The deactivation rate upon fluoride dilution shows a second order dependence with respect to the residual F- concentration, suggesting the sequential release of at least three F-/G alpha. Thus, in millimolar Mg2+ and F-, and without Al3+, two Mg2+ and three F- bind sequentially to G alpha GDP and induce the switch to an active G alpha (GDP-MgF3)Mg state, which is structurally analogous to G alpha (GDP-AlFx)Mg and to G alpha (GTP)Mg.

摘要

在有镁存在的情况下,氟离子和铝离子通过形成模拟GTPγ磷酸基团的AlFx复合物来激活异源三聚体G蛋白。我们报告了关于氟离子和镁在无Al3+情况下激活G蛋白新提出过程的有力证据。在含有毫摩尔浓度的Mg2+和F-时,Gs和Gt分别激活腺苷酸环化酶和cGMP磷酸二酯酶。在31P NMR中,向含有氟离子但无Al3+的Gi1α GDP或Gtα GDP溶液中添加镁,会改变GDPβ磷的化学位移,这表明镁与β磷酸基团相互作用。对这种效应的滴定表明每个Gα结合两个Mg2+。通过Gα色氨酸荧光监测的双相激活动力学表明,一个Mg2+与Gα GDP快速结合,另一个Mg2+缓慢结合,这与氟离子结合和Gα激活相关。氟离子稀释后的失活速率对残余F-浓度呈二级依赖性,这表明至少三个F-/Gα依次释放。因此,在毫摩尔浓度的Mg2+和F-且无Al3+的情况下,两个Mg2+和三个F-依次与Gα GDP结合,并诱导转变为活性Gα (GDP-MgF3)Mg状态,其结构类似于Gα (GDP-AlFx)Mg和Gα (GTP)Mg。

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J Biol Chem. 1993 Feb 5;268(4):2393-402.
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