Baudier J, Cole R D
Department of Biochemistry, University of California, Berkeley 94720.
J Biol Chem. 1988 Apr 25;263(12):5876-83.
Binding between the microtubule-associated tau protein and S100b protein was demonstrated by affinity chromatography and cross-linking experiments and was manifested in the effect of S100b on tau protein phosphorylation by protein kinase II. All three expressions of the binding showed that S100b discriminates among the four species of tau, revealing for the first time that the different kinds of tau may differ functionally. Noncovalent interaction between tau and S100b depended on the presence of Ca2+ or Zn2+ and resulted in total inhibition of tau phosphorylation by protein kinase II. In the absence of reducing agent, covalent binding studies between Cys84 beta in the carboxyl-terminal region of the S100b-beta subunit and tau proteins confirmed interactions between the two proteins. It is suggested that the homologous calcium-binding domain that characterizes the carboxyl terminus of S100 and the tubulin subunit may be responsible for the common interaction of both proteins with tau proteins. The physicochemical relationship between S100 subunits and p11, the subunit of a substrate for tyrosine kinase, and their similarity in interaction with protein kinase substrates are discussed.
通过亲和色谱法和交联实验证明了微管相关tau蛋白与S100b蛋白之间的结合,并且这种结合体现在S100b对蛋白激酶II介导的tau蛋白磷酸化的影响上。这三种结合表现均表明,S100b能够区分tau的四种亚型,首次揭示了不同类型的tau在功能上可能存在差异。tau与S100b之间的非共价相互作用依赖于Ca2+或Zn2+的存在,并导致蛋白激酶II对tau磷酸化的完全抑制。在没有还原剂的情况下,S100b-β亚基羧基末端区域的Cys84β与tau蛋白之间的共价结合研究证实了这两种蛋白之间的相互作用。有人提出,S100羧基末端和微管蛋白亚基所特有的同源钙结合结构域可能是这两种蛋白与tau蛋白共同相互作用的原因。文中还讨论了S100亚基与酪氨酸激酶底物的亚基p11之间的物理化学关系,以及它们在与蛋白激酶底物相互作用方面的相似性。