Chen Hung-Hsi, Wong Yu-Hui, Geneviere Anne-Marie, Fann Ming-Ji
Institute of Neuroscience, National Yang-Ming University, Taipei 11221, Taiwan, ROC.
Biochem Biophys Res Commun. 2007 Mar 16;354(3):735-40. doi: 10.1016/j.bbrc.2007.01.049. Epub 2007 Jan 18.
Due to the strong sequence homology it has been suggested that CDC2L5 and CDK12 belong to a high molecular weight subfamily of CDC2 family with PITAI/VRE motifs [F. Marques, J.L. Moreau, G. Peaucellier, J.C. Lozano, P. Schatt, A. Picard, I. Callebaut, E. Perret, A.M. Geneviere, A new subfamily of high molecular mass CDC2-related kinases with PITAI/VRE motifs, Biochem. Biophys. Res. Commun. 279 (2000) 832-837]. Recently, we reported that CDK12 interacts with L-type cyclins and is involved in alternative splicing regulation [H.-H. Chen, Y.-C. Wang, M.-J. Fann, Identification and characterization of the CDK12/Cyclin L1 complex involved in alternative splicing regulation, Mol. Cel. Biol. 26 (2006) 2736-2745]. Here, we provide evidence that CDC2L5 also interacts with L-type cyclins and thus rename it as cyclin-dependent kinase 13 (CDK13). The kinase domain of CDK13 is sufficient to bind the cyclin domains of L-type cyclins. Moreover, CDK13 and L-type cyclins modulate each other's subcellular localization. When CDK13 and an E1a minigene reporter construct were over-expressed in HEK293T cells, CDK13 alters the splicing pattern of E1a transcripts in a dose-dependent manner. Similar to effects of CDK12, effects of CDK13 on splicing pattern are counteracted by SF2/ASF and SC35. These findings strengthen CDK12 and CDK13 as a subfamily of cyclin-dependent kinases that regulate alternative splicing.
由于序列同源性高,有人提出CDC2L5和CDK12属于具有PITAI/VRE基序的CDC2家族高分子量亚家族[F. Marques, J.L. Moreau, G. Peaucellier, J.C. Lozano, P. Schatt, A. Picard, I. Callebaut, E. Perret, A.M. Geneviere,具有PITAI/VRE基序的高分子量CDC2相关激酶新亚家族,生物化学与生物物理研究通讯279 (2000) 832 - 837]。最近,我们报道CDK12与L型细胞周期蛋白相互作用并参与可变剪接调控[H.-H. Chen, Y.-C. Wang, M.-J. Fann,参与可变剪接调控的CDK12/细胞周期蛋白L1复合物的鉴定与表征,分子与细胞生物学26 (2006) 2736 - 274]。在此,我们提供证据表明CDC2L5也与L型细胞周期蛋白相互作用,因此将其重新命名为细胞周期蛋白依赖性激酶13 (CDK13)。CDK13的激酶结构域足以结合L型细胞周期蛋白的细胞周期蛋白结构域。此外,CDK13和L型细胞周期蛋白相互调节彼此的亚细胞定位。当CDK13和E1a小基因报告构建体在HEK293T细胞中过表达时,CDK13以剂量依赖性方式改变E1a转录本的剪接模式。与CDK12的作用类似,CDK13对剪接模式的作用被SF2/ASF和SC35抵消。这些发现强化了CDK12和CDK13作为调节可变剪接的细胞周期蛋白依赖性激酶亚家族的地位。