Lee J C, Kwon Y G, Lawrence D S, Edelman A M
Department of Pharmacology and Therapeutics, State University of New York at Buffalo 14214.
Proc Natl Acad Sci U S A. 1994 Jul 5;91(14):6413-7. doi: 10.1073/pnas.91.14.6413.
The substrate recognition determinants of Ca2+/calmodulin-dependent protein kinase Ia were investigated by using peptide analogues based on the amino acid sequence around Ser-9 of synapsin I. The Km and Vmax for the synthetic peptide Leu-Arg-Arg-Arg-Leu-Ser-Asp-Ala-Asn-Phe are 3.9 microM and 18.5 mumol/(min.mg), respectively. Deletion of Leu at the -5 position lowers the Vmax/Km by 470-fold. The requirement for a hydrophobic residue at -5 was confirmed by the 90- to 2400-fold reduction in Vmax/Km produced by Arg, Ala, or Asp substitutions, but only 2.6-fold decrease after Phe substitution at this position. A hydrophobic residue is similarly required at the +4 position. Deletion of Phe at this position produces a 67-fold reduction, and substitution of Ala for Phe a 43-fold reduction in Vmax/Km. In contrast, substitution with Leu increases Vmax/Km by 1.8-fold. Arg at -3 is also required for recognition as shown by an approximately 240-fold decrease in Vmax/Km after Ala substitution at this position. Positions -2, -4, and +1 appear to play secondary roles in substrate recognition. Arg at -2 and -4 are positive determinants, since Ala substitution at these positions decreases Vmax/Km by 4.7- and 11-fold, respectively. Asp at +1 is a negative influence, since Ala and Leu substitutions at this position increase Vmax/Km by 2.3- and 6.3-fold, respectively. Substitution of Ala for Leu at -1 or Thr for Ser at the 0 position has little effect on phosphorylation kinetics. Thus, Ca2+/calmodulin-dependent protein kinase Ia has the minimal substrate recognition motif of Hyd-Xaa-Arg-Xaa-Xaa-(Ser*/Thr*)-Xaa-Xaa-Xaa-Hyd, where Hyd represents a hydrophobic amino acid residue.
通过使用基于突触素I的Ser-9周围氨基酸序列的肽类似物,研究了Ca2+/钙调蛋白依赖性蛋白激酶Ia的底物识别决定因素。合成肽Leu-Arg-Arg-Arg-Leu-Ser-Asp-Ala-Asn-Phe的Km和Vmax分别为3.9 microM和18.5 mumol/(min.mg)。在-5位缺失Leu会使Vmax/Km降低470倍。在-5位对疏水性残基的需求通过Arg、Ala或Asp取代导致Vmax/Km降低90至2400倍得到证实,但在此位置用Phe取代后仅降低2.6倍。在+4位同样需要一个疏水性残基。在此位置缺失Phe会使Vmax/Km降低67倍,用Ala取代Phe会使Vmax/Km降低43倍。相反,用Leu取代会使Vmax/Km增加1.8倍。如在此位置用Ala取代后Vmax/Km降低约240倍所示,-3位的Arg对于识别也是必需的。-2、-4和+1位在底物识别中似乎起次要作用。-2和-4位的Arg是正向决定因素,因为在这些位置用Ala取代会使Vmax/Km分别降低4.7倍和11倍。+1位的Asp是负向影响因素,因为在该位置用Ala和Leu取代会使Vmax/Km分别增加2.3倍和6.3倍。在-1位用Ala取代Leu或在0位用Thr取代Ser对磷酸化动力学影响很小。因此,Ca2+/钙调蛋白依赖性蛋白激酶Ia具有最小的底物识别基序Hyd-Xaa-Arg-Xaa-Xaa-(Ser*/Thr*)-Xaa-Xaa-Xaa-Hyd,其中Hyd代表疏水性氨基酸残基。