Li J, Poi M J, Qin D, Selby T L, Byeon I J, Tsai M D
Department of Biochemistry, Ohio State Biochemistry Program, The Ohio State University, Columbus, Ohio 43210, USA.
Biochemistry. 2000 Feb 1;39(4):649-57. doi: 10.1021/bi991281u.
We report the first detailed structure-function analyses of p18INK4C (p18), which is a homologue of the important tumor suppressor p16INK4A (p16). Twenty-four mutants were designed rationally. The global conformations of the mutants were characterized by NMR, while the function was assayed by inhibition of cyclin-dependent kinase 4 (CDK4). Most of these mutants have unperturbed global structures, thus the changes in their inhibitory abilities can be attributed to the mutated residues. The important results are summarized as follows: (a) some residues at loops 1 and 2, but not 3, are important for the inhibitory function of p18, similar to the results for p16; (b) two residues at the first helix-turn-helix motif and two at the third are important for inhibition; (c) while the results generally agree with the prediction based on the crystal structures of p16-CDK6 and p19-CDK6 binary complexes, there are significant differences in a few residues, suggesting that the interactions in the binary complexes may not accurately represent the interactions in the ternary complexes (in the presence of cyclin D2); (d) most importantly, the extra loop of p18 appears to contribute to the function of p18, even though the crystal structure of the p19INK4D-CDK6 complex indicates no interactions involving this loop; (e) detailed analyses of the crystal structures and the functional results suggest that there are notable differences in the interactions between different members of the INK4 family and CDKs.
我们报告了对p18INK4C(p18)的首次详细结构-功能分析,p18是重要肿瘤抑制因子p16INK4A(p16)的同源物。合理设计了24个突变体。通过核磁共振(NMR)对突变体的整体构象进行了表征,同时通过抑制细胞周期蛋白依赖性激酶4(CDK4)来检测其功能。这些突变体中的大多数具有未受干扰的整体结构,因此它们抑制能力的变化可归因于突变的残基。重要结果总结如下:(a)第1环和第2环而非第3环的一些残基对p18的抑制功能很重要,这与p16的结果类似;(b)第一个螺旋-转角-螺旋基序中的两个残基和第三个螺旋-转角-螺旋基序中的两个残基对抑制作用很重要;(c)虽然结果总体上与基于p16-CDK6和p19-CDK6二元复合物晶体结构的预测一致,但在一些残基上存在显著差异,这表明二元复合物中的相互作用可能无法准确代表三元复合物(在细胞周期蛋白D2存在的情况下)中的相互作用;(d)最重要的是,p18的额外环似乎对p18的功能有贡献,尽管p19INK4D-CDK6复合物的晶体结构表明不存在涉及该环的相互作用;(e)对晶体结构和功能结果的详细分析表明,INK4家族不同成员与CDK之间的相互作用存在显著差异。