Meek Katheryn, Douglas Pauline, Cui Xiaoping, Ding Qi, Lees-Miller Susan P
College of Veterinary Medicine and Department of Pathobiology and Diagnostic Investigation, Michigan State University, East Lansing, MI 48824, USA.
Mol Cell Biol. 2007 May;27(10):3881-90. doi: 10.1128/MCB.02366-06. Epub 2007 Mar 12.
Recent studies have established that DNA-dependent protein kinase (DNA-PK) undergoes a series of autophosphorylation events that facilitate successful completion of nonhomologous DNA end joining. Autophosphorylation at sites in two distinct clusters regulates DNA end access to DNA end-processing factors and to other DNA repair pathways. Autophosphorylation within the kinase's activation loop regulates kinase activity. Additional autophosphorylation events (as yet undefined) occur that mediate kinase dissociation. Here we provide the first evidence that autophosphorylation within the two major clusters (regulating end access) occurs in trans. Further, both UV-induced and double-strand break (DSB)-induced phosphorylation in the two major clusters is predominantly autophosphorylation. Finally, we show that while autophosphorylation in trans on one of two synapsed DNA-PK complexes facilitates appropriate end processing, this is not sufficient to promote efficient end joining. This suggests that end joining in living cells requires additional phosphorylation events that either occur in cis or that occur on both sides of the DNA-PK synapse. These data support an emerging consensus that, via a series of autophosphorylation events, DNA-PK undergoes a sequence of conformational changes that promote efficient and appropriate repair of DSBs.
最近的研究证实,DNA依赖性蛋白激酶(DNA-PK)会经历一系列自身磷酸化事件,这些事件有助于非同源DNA末端连接的成功完成。两个不同簇位点的自身磷酸化调节DNA末端与DNA末端加工因子以及其他DNA修复途径的接触。激酶激活环内的自身磷酸化调节激酶活性。还会发生介导激酶解离的其他自身磷酸化事件(尚未明确)。在此,我们提供了首个证据,证明两个主要簇(调节末端接触)内的自身磷酸化以反式发生。此外,两个主要簇中紫外线诱导和双链断裂(DSB)诱导的磷酸化主要是自身磷酸化。最后,我们表明,虽然两个突触DNA-PK复合物之一上的反式自身磷酸化有助于进行适当的末端加工,但这不足以促进高效的末端连接。这表明活细胞中的末端连接需要额外的磷酸化事件,这些事件要么顺式发生,要么在DNA-PK突触两侧发生。这些数据支持了一个新形成的共识,即通过一系列自身磷酸化事件,DNA-PK会经历一系列构象变化,从而促进DSB的高效和适当修复。