Howard Hughes Medical Institute, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Genes Dev. 2011 Feb 15;25(4):363-72. doi: 10.1101/gad.2011511. Epub 2011 Feb 2.
In Saccharomyces cerevisiae cells, B-type cyclin-dependent kinases (CDKs) target two origin recognition complex (ORC) subunits, Orc2 and Orc6, to inhibit helicase loading. We show that helicase loading by ORC is inhibited by two distinct CDK-dependent mechanisms. Independent of phosphorylation, binding of CDK to an "RXL" cyclin-binding motif in Orc6 sterically reduces the initial recruitment of the Cdt1/Mcm2-7 complex to ORC. CDK phosphorylation of Orc2 and Orc6 inhibits the same step in helicase loading. This phosphorylation of Orc6 is stimulated by the RXL motif and mediates the bulk of the phosphorylation-dependent inhibition of helicase loading. Direct binding experiments show that CDK phosphorylation specifically blocks one of the two Cdt1-binding sites on Orc6. Consistent with the inactivation of one Cdt1-binding site preventing helicase loading, CDK phosphorylation of ORC causes a twofold reduction of initial Cdt1/Mcm2-7 recruitment but results in nearly complete inhibition of Mcm2-7 loading. Intriguingly, in addition to being a target of both CDK inhibitory mechanisms, the Orc6 RXL/cyclin-binding motif plays a positive role in the initial recruitment of Cdt1/Mcm2-7 to the origin, suggesting that this motif is critical for the switch between active and inhibited ORC function at the G1-to-S-phase transition.
在酿酒酵母细胞中,B 类细胞周期蛋白依赖性激酶(CDK)靶向两个起始识别复合物(ORC)亚基,Orc2 和 Orc6,以抑制解旋酶加载。我们表明,ORC 的解旋酶加载受两种不同的 CDK 依赖性机制抑制。独立于磷酸化,CDK 与 Orc6 中的“RXL”细胞周期蛋白结合基序的结合在空间上减少了 Cdt1/Mcm2-7 复合物最初招募到 ORC 的过程。Orc2 和 Orc6 的 CDK 磷酸化抑制解旋酶加载的相同步骤。这种 Orc6 的磷酸化受 RXL 基序刺激,并介导解旋酶加载的大部分磷酸化依赖性抑制。直接结合实验表明,CDK 磷酸化特异性地阻断 Orc6 上的两个 Cdt1 结合位点之一。与一个 Cdt1 结合位点失活阻止解旋酶加载一致,CDK 磷酸化 ORC 导致初始 Cdt1/Mcm2-7 募集减少两倍,但导致 Mcm2-7 加载几乎完全抑制。有趣的是,除了是两种 CDK 抑制机制的靶标外,Orc6 的 RXL/细胞周期蛋白结合基序在 Cdt1/Mcm2-7 向起始点的初始募集中也发挥积极作用,表明该基序对于在 G1 到 S 期过渡期间在 ORC 功能的激活和抑制之间切换至关重要。