Chromosome Dynamics Laboratory, RIKEN Cluster for Pioneering Research, Wako, Saitama, Japan.
PLoS One. 2024 Mar 25;19(3):e0299003. doi: 10.1371/journal.pone.0299003. eCollection 2024.
Cyclin-dependent kinase 1 (Cdk1) complexed with cyclin B phosphorylates multiple sites on hundreds of proteins during mitosis. However, it is not fully understood how multi-site mitotic phosphorylation by cyclin B-Cdk1 controls the structures and functions of individual substrates. Here we develop an easy-to-use protocol to express recombinant vertebrate cyclin B and Cdk1 in insect cells from a single baculovirus vector and to purify their complexes with excellent homogeneity. A series of in-vitro assays demonstrate that the recombinant cyclin B-Cdk1 can efficiently and specifically phosphorylate the SP and TP motifs in substrates. The addition of Suc1 (a Cks1 homolog in fission yeast) accelerates multi-site phosphorylation of an artificial substrate containing TP motifs. Importantly, we show that mitosis-specific multi-subunit and multi-site phosphorylation of the condensin I complex can be recapitulated in vitro using recombinant cyclin B-Cdk1-Suc1. The materials and protocols described here will pave the way for dissecting the biochemical basis of critical mitotic processes that accompany Cdk1-mediated large-scale phosphorylation.
周期蛋白依赖性激酶 1(Cdk1)与周期蛋白 B 形成复合物,在有丝分裂过程中磷酸化数百种蛋白质上的多个位点。然而,目前尚不完全清楚周期蛋白 B-Cdk1 的多部位有丝分裂磷酸化如何控制各个底物的结构和功能。在这里,我们开发了一种简单易用的方案,从单个杆状病毒载体在昆虫细胞中表达重组脊椎动物周期蛋白 B 和 Cdk1,并以优异的均一性纯化它们的复合物。一系列体外实验表明,重组的周期蛋白 B-Cdk1 可以有效地、特异性地磷酸化底物中的 SP 和 TP 基序。添加 Suc1(裂殖酵母中的 Cks1 同源物)可加速含有 TP 基序的人工底物的多位点磷酸化。重要的是,我们表明,使用重组的周期蛋白 B-Cdk1-Suc1 可以在体外重现着丝粒复合物的有丝分裂特异性多亚基和多位点磷酸化。这里描述的材料和方案将为剖析伴随 Cdk1 介导的大规模磷酸化的关键有丝分裂过程的生化基础铺平道路。