Armstrong R L, Wilson J E, Shoemaker C B
Department of Biochemistry, Michigan State University, East Lansing 48824, USA.
Protein Expr Purif. 1996 Nov;8(3):374-80. doi: 10.1006/prep.1996.0113.
The hexokinase (ATP;D-hexose 6-phosphotransferase, EC 2.7.1.1) of Schistosoma mansoni has been expressed in Escherichia coli as a fusion protein including an N-terminal polyhistidine tag and enterokinase cleavage site. The enzyme was purified by metal chelate chromatography to > 95% homogeneity, based on analysis by SDS-gel electrophoresis and isoelectric focusing. The absorbance at 280 nm was 0.54 for a 1 mg/ml solution (molar extinction coefficient 2.7 x 10(4) cm2 mol). The pI of the S. mansoni hexokinase was 6.0-6.2, slightly more acidic than the rat Type I isozyme (pI 6.35). The S. mansoni enzyme migrated as a single band of activity during nondenaturing cellulose acetate electrophoresis; the mobility was slightly greater than the rat Type I isozyme, consistent with the estimated pI. The Km values for substrates glucose and ATP were 128 +/- 10 and 927 +/- 41 microM, respectively. In accord with a previous report, the S. mansoni hexokinase exhibited moderate sensitivity to inhibition (competitive vs ATP) by the product, glucose 6-phosphate, with a Ki approximately 150 microM; the product analog, 1,5-anhydroglucitol 6-phosphate, was somewhat less effective as an inhibitor, with Ki approximately 500 microM. These kinetic properties were not altered by removal of the N-terminal fusion partner by enterokinase treatment. Immunological crossreactivity between the rat Type I isozyme and the S. mansoni hexokinase was demonstrated by immunoblotting, but this was markedly dependent on the preparation of antiserum used. The activity of the enzyme is apparently highly dependent on maintenance of free sulfhydryl groups. Activity was maintained during storage in the presence of monothioglycerol; activity lost during storage in the absence of monothioglycerol could be partially restored by treatment with this reagent.
曼氏血吸虫的己糖激酶(ATP;D-己糖6-磷酸转移酶,EC 2.7.1.1)已在大肠杆菌中作为一种融合蛋白表达,该融合蛋白包含一个N端多组氨酸标签和肠激酶切割位点。基于SDS-凝胶电泳和等电聚焦分析,通过金属螯合层析将该酶纯化至>95%的纯度。1mg/ml溶液在280nm处的吸光度为0.54(摩尔消光系数2.7×10⁴cm²/mol)。曼氏血吸虫己糖激酶的pI为6.0 - 6.2,比大鼠I型同工酶(pI 6.35)略偏酸性。在非变性醋酸纤维素电泳中,曼氏血吸虫酶以单一活性条带迁移;迁移率略大于大鼠I型同工酶,与估计的pI一致。底物葡萄糖和ATP的Km值分别为128±10和927±41μM。与先前的报道一致,曼氏血吸虫己糖激酶对产物葡萄糖6-磷酸的抑制作用(与ATP竞争)表现出中等敏感性,Ki约为150μM;产物类似物1,5-脱水葡萄糖醇6-磷酸作为抑制剂的效果稍差,Ki约为500μM。通过肠激酶处理去除N端融合伴侣后,这些动力学性质未改变。通过免疫印迹证明了大鼠I型同工酶与曼氏血吸虫己糖激酶之间的免疫交叉反应性,但这明显取决于所用抗血清的制备。该酶的活性显然高度依赖于游离巯基的维持。在单硫甘油存在下储存期间活性得以保持;在没有单硫甘油的情况下储存期间丧失的活性可通过用该试剂处理部分恢复。