Zhang Jianwen, Luan Chi-Hao, Chou Kuo-Chen, Johnson Gail V W
Department of Psychiatry, University of Alabama at Birmingham, Birmingham, Alabama 35294-0017, USA.
Proteins. 2002 Aug 15;48(3):447-53. doi: 10.1002/prot.10173.
Cyclin dependent kinase (Cdk) 5, an atypical member of the Cdk family, plays a fundamental role in the development of the nervous system, and may also be involved in the pathogenesis of certain neurodegenerative diseases. Further, Cdk5 is activated by the specific regulatory proteins p39, p35, or p25 rather than cyclins, and in contrast to other members of the Cdk family is not involved in the progression of the cell cycle. A three-dimensional computer model of Cdk5-p25-ATP has been generated previously [Chou et al., Biochem Biophys Res Commun 1999;259:420-428], providing a structural basis for the study of the mechanisms of Cdk5 activation. To assess the predicted ATP and p25 binding domains at the N-terminal of Cdk5, two mutants of Cdk5 were prepared in which amino acids 9-15 (Delta9-15) or 9-47 (Delta9-47) were deleted. The results of these studies clearly demonstrate that an N-terminal loop and the PSSALRE helix are indispensable for Cdk5-p25 interactions, and amino acids 9-15 are necessary for ATP binding but are not involved in Cdk5-p25 interactions. Predicted models of Delta9-15 Cdk5 and Delta9-47 Cdk5 were generated, and were used to interpret the experimental data. The experimental and molecular modeling results confirm and extend specific aspects of the original predicted computer model, and may provide useful information for the design of highly selective inhibitors of Cdk5, which could be used in the treatment of certain neurodegenerative conditions.
细胞周期蛋白依赖性激酶(Cdk)5是Cdk家族的一个非典型成员,在神经系统发育中起重要作用,也可能参与某些神经退行性疾病的发病机制。此外,Cdk5是由特定的调节蛋白p39、p35或p25激活,而非细胞周期蛋白,与Cdk家族的其他成员不同,它不参与细胞周期进程。先前已构建了Cdk5-p25-ATP的三维计算机模型[Chou等人,《生物化学与生物物理研究通讯》,1999年;259:420 - 428],为研究Cdk5激活机制提供了结构基础。为评估Cdk5 N端预测的ATP和p25结合结构域,制备了两个Cdk5突变体,其中删除了氨基酸9 - 15(Delta9 - 15)或9 - 47(Delta9 - 47)。这些研究结果清楚地表明,N端环和PSSALRE螺旋对于Cdk5 - p25相互作用是不可或缺的,氨基酸9 - 15对于ATP结合是必需的,但不参与Cdk5 - p25相互作用。生成了Delta9 - 15 Cdk5和Delta9 - 47 Cdk5的预测模型,并用于解释实验数据。实验和分子建模结果证实并扩展了原始预测计算机模型的特定方面,可能为设计Cdk5的高选择性抑制剂提供有用信息,这些抑制剂可用于治疗某些神经退行性疾病。