Yao L, Suzuki H, Ozawa K, Deng J, Lehel C, Fukamachi H, Anderson W B, Kawakami Y, Kawakami T
Division of Allergy, La Jolla Institute for Allergy and Immunology, San Diego, California 92121, USA.
J Biol Chem. 1997 May 16;272(20):13033-9. doi: 10.1074/jbc.272.20.13033.
Pleckstrin homology (PH) domains comprised of loosely conserved sequences of approximately 100 amino acid residues are a functional protein motif found in many signal-transducing and cytoskeletal proteins. We recently demonstrated that the PH domains of Tec family protein-tyrosine kinases Btk and Emt (equal to Itk and Tsk) interact with protein kinase C (PKC) and that PKC down-regulates Btk by phosphorylation. In this study we have characterized the PKC-BtkPH domain interaction in detail. Using pure PKC preparations, it was shown that the Btk PH domain interacts with PKC with high affinity (KD = 39 nM). Unlike other tested phospholipids, phosphatidylinositol 4,5-bisphosphate, which binds to several PH domains, competed with PKC for binding to the PH domain apparently because their binding sites on the amino-terminal portion of the PH domains overlap. The minimal PKC-binding sequence within the Btk PH domain was found to correspond roughly to the second and third beta-sheets of the PH domains of known tertiary structures. On the other hand, the C1 regulatory region of PKCepsilon containing the pseudosubstrate and zinc finger-like sequences was found to be sufficient for strong binding to the Btk PH domain. Phorbol 12-myristate 13-acetate (PMA), a potent activator of PKC that interacts with the C1 region of PKC, inhibited the PKC-PH domain interaction, whereas the bioinactive PMA (4-alpha-PMA) was ineffective. The zeta isoform of PKC, which has a single zinc finger-like motif instead of the two tandem zinc finger-like sequences present in conventional and novel PKC isoforms, does not bind PMA. Thus, as expected, PH domain binding with PKCzeta was not interfered with by PMA. Further, inhibitors that are known to attack the catalytic domains of serine/threonine kinases did not affect this PKC-PH domain interaction. In contrast, the presence of physiological concentrations of Ca2+ induced less than a 2-fold increase in PKC-PH domain binding. These results indicate that PKC binding to PH domains involve the beta2-beta3 region of the Btk PH domain and the C1 region of PKC, and agents that interact with either of these regions (i.e. phosphatidylinositol 4,5-bisphosphate binding to the PH domain and PMA binding to the C1 region of PKC) might act to regulate PKC-PH domain binding.
由约100个氨基酸残基的松散保守序列组成的普列克底物同源(PH)结构域是在许多信号转导蛋白和细胞骨架蛋白中发现的一种功能性蛋白质基序。我们最近证明,Tec家族蛋白酪氨酸激酶Btk和Emt(等同于Itk和Tsk)的PH结构域与蛋白激酶C(PKC)相互作用,并且PKC通过磷酸化作用下调Btk。在本研究中,我们详细表征了PKC与Btk PH结构域的相互作用。使用纯PKC制剂,结果表明Btk PH结构域与PKC以高亲和力相互作用(KD = 39 nM)。与其他测试的磷脂不同,与几个PH结构域结合的磷脂酰肌醇4,5-二磷酸显然与PKC竞争与PH结构域的结合,因为它们在PH结构域氨基末端部分的结合位点重叠。发现Btk PH结构域内最小的PKC结合序列大致对应于已知三级结构的PH结构域的第二和第三个β折叠。另一方面,发现含有假底物和锌指样序列的PKCepsilon的C1调节区域足以与Btk PH结构域强烈结合。佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA)是一种与PKC的C1区域相互作用的PKC有效激活剂,它抑制PKC与PH结构域的相互作用,而无生物活性的PMA(4-α-PMA)则无效。PKC的ζ同工型具有单个锌指样基序,而不是传统和新型PKC同工型中存在的两个串联锌指样序列,它不结合PMA。因此,正如预期的那样,PH结构域与PKCζ的结合不受PMA的干扰。此外,已知攻击丝氨酸/苏氨酸激酶催化结构域的抑制剂不会影响这种PKC与PH结构域的相互作用。相反,生理浓度的Ca2+的存在导致PKC与PH结构域的结合增加不到2倍。这些结果表明,PKC与PH结构域的结合涉及Btk PH结构域的β2-β3区域和PKC的C1区域,与这些区域之一相互作用的试剂(即磷脂酰肌醇4,5-二磷酸与PH结构域的结合以及PMA与PKC的C1区域的结合)可能起到调节PKC与PH结构域结合的作用。