Nolen B, Yun C Y, Wong C F, McCammon J A, Fu X D, Ghosh G
Department of Chemistry and Biochemistry, University of California, San Diego, 9500 Gilman Drive, La Jolla, California 92130, USA.
Nat Struct Biol. 2001 Feb;8(2):176-83. doi: 10.1038/84178.
Sky1p is the only member of the SR protein kinase (SRPK) family in Saccharomyces cerevisiae. SRPKs are constitutively active kinases that display remarkable substrate specificity and have been implicated in RNA processing. Here we present the three-dimensional structure of a fully active truncated Sky1p. Analysis of the structure and structure-based functional studies reveal that the C-terminal tail, an unusual Glu residue located in the P+1 loop, and a unique mechanism for the positioning of helix alpha C act together to render Sky1p constitutively active. We have modeled a substrate peptide bound to Sky1p. The modeled complex combined with mutagenesis studies illustrate the molecular basis for substrate recognition by this kinase and suggest a mechanism by which SRPKs catalyze a sequential phosphorylation reaction of the consecutive RS dipeptide repeats characteristic of mammalian SRPK substrates.
Sky1p是酿酒酵母中SR蛋白激酶(SRPK)家族的唯一成员。SRPK是组成型活性激酶,具有显著的底物特异性,并参与RNA加工过程。在此,我们展示了一个完全活性的截短型Sky1p的三维结构。对该结构的分析以及基于结构的功能研究表明,C末端尾巴、位于P+1环的一个不寻常的Glu残基以及αC螺旋定位的独特机制共同作用,使Sky1p具有组成型活性。我们对与Sky1p结合的底物肽进行了建模。该建模复合物与诱变研究相结合,阐明了这种激酶识别底物的分子基础,并提出了一种机制,通过该机制SRPK催化哺乳动物SRPK底物特有的连续RS二肽重复序列的顺序磷酸化反应。