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蛋白激酶C-ι激酶结构域在其结合ATP和无ATP形式下的结构揭示了C末端尾巴中533-551位残基的特定结构及其在ATP结合中的作用。

Structures of the PKC-iota kinase domain in its ATP-bound and apo forms reveal defined structures of residues 533-551 in the C-terminal tail and their roles in ATP binding.

作者信息

Takimura Tetsuo, Kamata Kenji, Fukasawa Kazuhiro, Ohsawa Hirokazu, Komatani Hideya, Yoshizumi Takashi, Takahashi Ikuko, Kotani Hidehito, Iwasawa Yoshikazu

机构信息

Tsukuba Research Institute, Merck Research Laboratories, Banyu Pharmaceutical Co. Ltd, Okubo-3, Tsukuba, 300-2611 Ibaraki, Japan.

出版信息

Acta Crystallogr D Biol Crystallogr. 2010 May;66(Pt 5):577-83. doi: 10.1107/S0907444910005639. Epub 2010 Apr 21.

Abstract

Protein kinase C (PKC) plays an essential role in a wide range of cellular functions. Although crystal structures of the PKC-theta, PKC-iota and PKC-betaII kinase domains have previously been determined in complexes with small-molecule inhibitors, no structure of a PKC-substrate complex has been determined. In the previously determined PKC-iota complex, residues 533-551 in the C-terminal tail were disordered. In the present study, crystal structures of the PKC-iota kinase domain in its ATP-bound and apo forms were determined at 2.1 and 2.0 A resolution, respectively. In the ATP complex, the electron density of all of the C-terminal tail residues was well defined. In the structure, the side chain of Phe543 protrudes into the ATP-binding pocket to make van der Waals interactions with the adenine moiety of ATP; this is also observed in other AGC kinase structures such as binary and ternary substrate complexes of PKA and AKT. In addition to this interaction, the newly defined residues around the turn motif make multiple hydrogen bonds to glycine-rich-loop residues. These interactions reduce the flexibility of the glycine-rich loop, which is organized for ATP binding, and the resulting structure promotes an ATP conformation that is suitable for the subsequent phosphoryl transfer. In the case of the apo form, the structure and interaction mode of the C-terminal tail of PKC-iota are essentially identical to those of the ATP complex. These results indicate that the protein structure is pre-organized before substrate binding to PKC-iota, which is different from the case of the prototypical AGC-branch kinase PKA.

摘要

蛋白激酶C(PKC)在广泛的细胞功能中起着至关重要的作用。尽管此前已确定PKC-θ、PKC-ι和PKC-βII激酶结构域与小分子抑制剂形成复合物时的晶体结构,但尚未确定PKC-底物复合物的结构。在先前确定的PKC-ι复合物中,C末端尾巴中的533-551位残基无序。在本研究中,分别以2.1 Å和2.0 Å的分辨率确定了处于ATP结合形式和无配体形式的PKC-ι激酶结构域的晶体结构。在ATP复合物中,所有C末端尾巴残基的电子密度都清晰可辨。在该结构中,Phe543的侧链伸入ATP结合口袋,与ATP的腺嘌呤部分形成范德华相互作用;在其他AGC激酶结构中,如PKA和AKT的二元和三元底物复合物中也观察到了这种情况。除了这种相互作用外,转角基序周围新确定的残基与富含甘氨酸的环残基形成多个氢键。这些相互作用降低了为ATP结合而组织的富含甘氨酸的环的灵活性,并且所得到的结构促进了适合后续磷酸转移的ATP构象。在无配体形式的情况下,PKC-ι的C末端尾巴的结构和相互作用模式与ATP复合物基本相同。这些结果表明,在底物与PKC-ι结合之前,蛋白质结构就已预先组织好,这与典型的AGC分支激酶PKA的情况不同。

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