Gish G, McGlone M L, Pawson T, Adams J A
Samuel Lunenfeld Research Institute, Mt. Sinai Hospital, Toronto, Ontario, Canada.
Protein Eng. 1995 Jun;8(6):609-14. doi: 10.1093/protein/8.6.609.
The gene coding for the tyrosine protein kinase domain of v-fps was subcloned into a plasmid vector expressing glutathione-S-transferase (GST). This new vector expresses a fusion protein in Escherichia coli composed of the kinase domain linked with GST at the N-terminus (GST-kin). A portion of the total expressed protein was soluble upon cell lysis and was purified by affinity chromatography using glutathione cross-linked agarose. GST-kin (M(r) 57,000) is a phosphoprotein as judged by 32P autoradiography, consistent with the known autophosphorylation site within the kinase core [Weinmaster et al. (1984) Cell, 37, 559-568]. Cleavage of the fusion protein with thrombin and purification on phosphocellulose resin yielded the pure kinase domain (M(r) 33,000). The activity of the kinase domain is indistinguishable from that of GST-kin using the peptide substrate EEEIYEEIE, indicating that N-terminal fusion has no effect on the kinase domain. GST-kin phosphorylates a second peptide, EAEIYEAIE, with improved catalytic efficiency. Initial velocity data are consistent with a random bireactant mechanism with no substrate synergism observed in the ternary complex. Steady-state kinetic analyses reveal that this peptide is phosphorylated, with a kcat of 3.6 s-1, a Kpeptide of 500 microM and a KATP of 250 microM. The expression, purification and preliminary kinetic analysis of the kinase domain of v-fps provide the first step in the application of structure-function studies for this oncoprotein.
编码v-fps酪氨酸蛋白激酶结构域的基因被亚克隆到一个表达谷胱甘肽-S-转移酶(GST)的质粒载体中。这个新载体在大肠杆菌中表达一种融合蛋白,该融合蛋白由在N端与GST相连的激酶结构域组成(GST-kin)。总表达蛋白的一部分在细胞裂解后是可溶的,并通过使用谷胱甘肽交联琼脂糖的亲和层析进行纯化。通过32P放射自显影判断,GST-kin(相对分子质量57,000)是一种磷蛋白,这与激酶核心内已知的自磷酸化位点一致[温马斯特等人(1984年)《细胞》,37卷,559 - 568页]。用凝血酶切割融合蛋白并在磷酸纤维素树脂上纯化,得到了纯的激酶结构域(相对分子质量33,000)。使用肽底物EEEIYEEIE时,激酶结构域的活性与GST-kin的活性没有区别,这表明N端融合对激酶结构域没有影响。GST-kin以更高的催化效率磷酸化第二种肽EAEIYEAIE。初始速度数据与随机双反应物机制一致,在三元复合物中未观察到底物协同作用。稳态动力学分析表明,这种肽被磷酸化,催化常数kcat为3.6 s-1,肽的米氏常数Kpeptide为500 microM,ATP的米氏常数KATP为250 microM。v-fps激酶结构域的表达、纯化和初步动力学分析为该癌蛋白的结构-功能研究应用迈出了第一步。