Leung Genie C, Ho Cynthia S W, Blasutig Ivan M, Murphy James M, Sicheri Frank
Centre for Systems Biology, Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Room 1090 A, Toronto, Ont, Canada.
FEBS Lett. 2007 Jan 9;581(1):77-83. doi: 10.1016/j.febslet.2006.11.080. Epub 2006 Dec 11.
The family of polo like kinases (Plks) regulate cell cycle progression through key functional roles in mitosis. While the four mammalian family members, Plk1-4, share overlapping functions, each member possesses unique functions that may be dictated in part by their ability to phosphorylate different substrates. Numerous cellular substrates for Plk1, 2, and 3 have been characterized, but the protein targets for Plk4/Sak remain unknown. We have purified the kinase domain of Sak and demonstrated that it has robust kinase activity in vitro. Using in vitro kinase assays on peptide spots arrays, we determined the consensus phosphorylation motif for Sak to be yen-[Ile/Leu/Val]-Ser/Thr-phi-phi-X- yen/Pro (where phi denotes a large hydrophobic residue, yen is a charged residue dependent on the context of the surrounding sequence, and residues in brackets are unfavoured). This consensus phosphorylation motif differs from that of Plk1, and provides a basis for future studies to identify in vivo substrates of Sak.
Polo样激酶(Plks)家族通过在有丝分裂中的关键功能作用来调节细胞周期进程。虽然四个哺乳动物家族成员Plk1 - 4具有重叠功能,但每个成员都具有独特功能,这可能部分取决于它们磷酸化不同底物的能力。Plk1、2和3的众多细胞底物已被鉴定,但Plk4/Sak的蛋白质靶点仍然未知。我们纯化了Sak的激酶结构域,并证明它在体外具有强大的激酶活性。通过对肽点阵列进行体外激酶测定,我们确定Sak的共有磷酸化基序为yen - [Ile/Leu/Val] - Ser/Thr - phi - phi - X - yen/Pro(其中phi表示大的疏水残基,yen是取决于周围序列上下文的带电荷残基,括号中的残基是不被青睐的)。这个共有磷酸化基序与Plk1不同,为未来鉴定Sak体内底物的研究提供了基础。