Kemp B E, Pearson R B, House C
Proc Natl Acad Sci U S A. 1983 Dec;80(24):7471-5. doi: 10.1073/pnas.80.24.7471.
The substrate specificity of the chicken gizzard myosin light chain kinase has been studied by using a series of synthetic peptide analogs of the NH2-terminal sequence of the chicken gizzard myosin light chain (Mr = 20,000). An 18-residue synthetic peptide, (sequence in text) corresponding to the sequence reported by Maita et al. [Maita, T., Chen, J. I. & Matsuda, G. (1981) Eur. J. Biochem. 117, 417-424], was phosphorylated with a 22-fold higher Km and a Vmax that was decreased to 1% of the native protein substrate. This peptide was also an inferior substrate when compared with an 18-residue synthetic peptide with an alternative sequence, (sequence: see text) which was phosphorylated with an apparent Km of 6.9 microM, comparable to the native protein substrate of 8.6 microM, and a Vmax of 3.9 mumol X min-1 X mg-1, 11% of that for the protein substrate. The kinetic of phosphorylation of shortened peptides corresponding to both sequences, together with peptides with appropriate substitutions, indicated that basic residues were the primary determinants of specificity for the smooth muscle myosin light chain kinase. In the latter peptide sequence, lysine residues 11 and 12 and the arginine at position 13 had a major influence on the kinetics of peptide phosphorylation.
通过使用一系列鸡砂囊肌球蛋白轻链(Mr = 20,000)NH2末端序列的合成肽类似物,对鸡砂囊肌球蛋白轻链激酶的底物特异性进行了研究。一种18个残基的合成肽,(文中序列)与Maita等人报道的序列相对应[Maita, T., Chen, J. I. & Matsuda, G. (1981) Eur. J. Biochem. 117, 417 - 424],其磷酸化时的Km值高22倍,Vmax降低至天然蛋白质底物的1%。与具有另一种序列的18个残基合成肽相比,该肽也是较差的底物,(序列:见文中)其磷酸化时的表观Km为6.9 microM,与8.6 microM的天然蛋白质底物相当,Vmax为3.9 μmol·min-1·mg-1,是蛋白质底物的11%。对应于这两种序列的缩短肽以及具有适当取代的肽的磷酸化动力学表明,碱性残基是平滑肌肌球蛋白轻链激酶特异性的主要决定因素。在后一种肽序列中,赖氨酸残基11和12以及第13位的精氨酸对肽磷酸化动力学有主要影响。