Pei Yi, Shuman Stewart
Molecular Biology Program, Sloan-Kettering Institute, New York, New York 10021, USA.
J Biol Chem. 2003 Oct 31;278(44):43346-56. doi: 10.1074/jbc.M307319200. Epub 2003 Aug 5.
Schizosaccharomyces pombe Cdk9/Pch1 protein kinase is a functional ortholog of the essential Saccharomyces cerevisiae Bur1/Bur2 kinase and a putative ortholog of metazoan P-TEFb (Cdk9/cyclin T). SpCdk9/Pch1 phosphorylates of the carboxyl-terminal domain (CTD) of the S. pombe transcription elongation factor Spt5, which consists of 18 tandem repeats of a nonapeptide of consensus sequence 1TPAWNSGSK9. We document the divalent cation dependence and specificity of SpCdk9/Pch1, its NTP dependence and specificity, the dependence of Spt5-CTD phosphorylation on the number of tandem nonamer repeats, and the specificity for phosphorylation of the Spt5-CTD on threonine at position 1 within the nonamer element. SpCdk9/Pch1 also phosphorylates the CTD heptaptide repeat array of the largest subunit of S. pombe RNA polymerase II (consensus sequence YSPTSPS) and does so exclusively on serine. SpCdk9/Pch1 catalyzes autophosphorylation of the kinase and cyclin subunits of the kinase complex. The distribution of phosphorylation sites on SpCdk9 (86% Ser(P), 11% Thr(P), 3% Tyr(P)) is distinct from that on Pch1 (2% Ser(P), 98% Thr(P)). We conducted a structure-guided mutational analysis of SpCdk9, whereby a total of 29 new mutations of 12 conserved residues were tested for in vivo function by complementation of a yeast bur1Delta mutant. We identified many lethal and conditional mutations of side chains implicated in binding ATP and the divalent cation cofactor, phosphoacceptor substrate recognition, and T-loop dynamics. We surmise that the lethality of the of T212A mutation in the T-loop reflects an essential phosphorylation event, insofar as the conservative T212S change rescued wild-type growth; the phosphomimetic T212E change rescued growth at 30 degrees C; and the effects of mutating the T-loop threonine were phenocopied by mutations in the three conserved arginines predicted to chelate the phosphate on the T-loop threonine.
粟酒裂殖酵母Cdk9/Pch1蛋白激酶是酿酒酵母中必需的Bur1/Bur2激酶的功能直系同源物,也是后生动物P-TEFb(Cdk9/细胞周期蛋白T)的假定直系同源物。SpCdk9/Pch1磷酸化粟酒裂殖酵母转录延伸因子Spt5的羧基末端结构域(CTD),该结构域由18个串联重复的共有序列为1TPAWNSGSK9的九肽组成。我们记录了SpCdk9/Pch1对二价阳离子的依赖性和特异性、其对NTP的依赖性和特异性、Spt5-CTD磷酸化对串联九肽重复序列数量的依赖性,以及Spt5-CTD在九肽元件中第1位苏氨酸上磷酸化的特异性。SpCdk9/Pch1还磷酸化粟酒裂殖酵母RNA聚合酶II最大亚基的CTD七肽重复序列阵列(共有序列YSPTSPS),并且仅在丝氨酸上进行磷酸化。SpCdk9/Pch1催化激酶复合体的激酶亚基和细胞周期蛋白亚基的自磷酸化。SpCdk9上磷酸化位点的分布(86%为Ser(P),11%为Thr(P),3%为Tyr(P))与Pch1上的分布(2%为Ser(P),98%为Thr(P))不同。我们对SpCdk9进行了结构导向的突变分析,通过酵母bur1Δ突变体的互补作用,共测试了12个保守残基的29个新突变在体内是否具有功能。我们鉴定出许多与ATP结合、二价阳离子辅因子结合、磷酸受体底物识别以及T环动力学相关的侧链致死和条件性突变。我们推测T环中T212A突变的致死性反映了一个必需的磷酸化事件,因为保守的T212S变化挽救了野生型生长;拟磷酸化的T212E变化在30℃时挽救了生长;并且T环苏氨酸突变的效应被预测与T环苏氨酸上的磷酸螯合的三个保守精氨酸的突变所模拟。