Abbas Tarek, Jha Sudhakar, Sherman Nicholas E, Dutta Anindya
Department of Biochemistry and Molecular Genetics, University of Virginia School of Medicine, Charlottesville, Virginia 22908, USA.
Cell Cycle. 2007 Apr 1;6(7):843-52. doi: 10.4161/cc.6.7.4000. Epub 2007 Apr 13.
Phosphorylation of a critical residue in the activation loop of many protein kinases is essential for enzymatic activity. The trimeric complex CDK7/cyclin H/Mat1 phosphorylates the cell cycle regulated cyclin-dependent kinase, CDK2 at Thr-160 in the activation segment in vitro. Whether CDK7/cyclin H is the in vivo CDK2 activating kinase (CAK), or the sole CAK for CDK2 remains elusive. Here we show that monomeric human CDK2 purified from bacteria is phosphorylated at Thr-160. CDK2 expressed and purified from bacteria exhibited kinase activity against histone H1, which was stimulated by cyclin E or A expressed and purified from bacteria. The kinase activity was dependent on both the catalytic activity of CDK2 and Thr-160 phosphorylation since it was abolished when CDK2 was mutated at Lys33 in the ATP binding site (K33R) or Thr160 (T160A) or when treated with lambda phosphatase. Mass spectrometry based phosphopeptide mapping confirmed the phosphorylation of bacterial CDK2 on Thr160. Consistent with a role of CDK2 in auto-activation, inhibition of CDK2 in human cells either by pharmacological inhibition of CDK2 or by the coexpression of the CDK2 inhibitors p21 or p27, inhibited CDK2 Thr-160 phosphorylation. Our results demonstrate that CDK2 is capable of autophosphorylation at Thr160.
许多蛋白激酶激活环中的关键残基磷酸化对于酶活性至关重要。三聚体复合物CDK7/细胞周期蛋白H/Mat1在体外可使细胞周期调控的细胞周期蛋白依赖性激酶CDK2在激活片段的苏氨酸160位点发生磷酸化。CDK7/细胞周期蛋白H是否是体内CDK2激活激酶(CAK),或者是否是CDK2唯一的CAK,目前仍不清楚。在此我们表明,从细菌中纯化的单体人CDK2在苏氨酸160位点发生了磷酸化。从细菌中表达并纯化的CDK2对组蛋白H1表现出激酶活性,该活性受到从细菌中表达并纯化的细胞周期蛋白E或A的刺激。该激酶活性依赖于CDK2的催化活性和苏氨酸160位点的磷酸化,因为当CDK2在ATP结合位点的赖氨酸33(K33R)或苏氨酸160(T160A)处发生突变时,或者用λ磷酸酶处理时,该活性就会消失。基于质谱的磷酸肽图谱分析证实了细菌CDK2在苏氨酸160位点的磷酸化。与CDK2在自身激活中的作用一致,在人细胞中通过药物抑制CDK2或者共表达CDK2抑制剂p21或p27来抑制CDK2,均会抑制CDK2苏氨酸160位点的磷酸化。我们的结果表明,CDK2能够在苏氨酸160位点进行自身磷酸化。