Viñals F, Camps M, Testar X, Palacín M, Zorzano A
Departament de Bioquimica i Biologia Moleculer, Facultat de Biologia, Universitat de Barcelona, Spain.
Mol Cell Biochem. 1997 Jun;171(1-2):69-73. doi: 10.1023/a:1006836001489.
We have recently reported that fluoride interacts directly with the insulin receptor, which causes inhibition of its phosphotransferase activity. The inhibitory effect of fluoride on phosphotransferase activity is not due to the formation of complexes with aluminium and occurs in the absence of alterations to the binding of ATP or insulin. In this report we substantiate that the tyrosine kinase activity of insulin receptors partially purified from rat skeletal muscle shows a strict requirement of Mg2+ ions (Ka near 11 mM). This effect of Mg2+ was inhibited in a competitive manner by Mn2+, which is compatible with competition of both divalent ions for binding sites. The inhibition of tyrosine kinase activity caused by fluoride was dependent on the concentration of Mg2+ in the medium and no inhibitory effect was detected at low concentrations of Mg2+. Moreover, the addition of increasing concentrations of Mn2+ in the presence of a constant high concentration of Mg2+, led to a gradual decrease in the inhibitory effect of fluoride. These results indicate that the Mg-insulin receptor complex is the major fluoride-susceptible form. Based on the characteristics of the inhibition of tyrosine kinase shown by fluoride it might be proposed that its action is exerted by the formation of multi-ionic MgF complexes analogous to Pi, which bind to the insulin receptor kinase.
我们最近报道,氟化物直接与胰岛素受体相互作用,导致其磷酸转移酶活性受到抑制。氟化物对磷酸转移酶活性的抑制作用并非由于与铝形成复合物,且在ATP或胰岛素结合未发生改变的情况下就会出现。在本报告中,我们证实从大鼠骨骼肌中部分纯化的胰岛素受体的酪氨酸激酶活性对Mg2+离子有严格需求(Ka接近11 mM)。Mg2+的这种作用被Mn2+以竞争方式抑制,这与两种二价离子竞争结合位点相符。氟化物引起的酪氨酸激酶活性抑制取决于培养基中Mg2+的浓度,在低浓度Mg2+时未检测到抑制作用。此外,在恒定高浓度Mg2+存在下添加浓度不断增加的Mn2+,会导致氟化物抑制作用逐渐减弱。这些结果表明Mg - 胰岛素受体复合物是主要的氟化物敏感形式。基于氟化物对酪氨酸激酶抑制的特性,可能有人提出其作用是通过形成类似于Pi的多离子MgF复合物来实现的,这些复合物与胰岛素受体激酶结合。