Listrom C D, Morizono H, Rajagopal B S, McCann M T, Tuchman M, Allewell N M
Department of Biochemistry, College of Biological Sciences, University of Minnesota, St. Paul 55108, USA.
Biochem J. 1997 Nov 15;328 ( Pt 1)(Pt 1):159-63. doi: 10.1042/bj3280159.
A bacterial expression system has been engineered for human glutamine synthetase (EC 6.3.1.2) that produces approximately 60 mg of enzyme (20% of the bacterial soluble protein) and yields approx. 8 mg of purified enzyme per litre of culture. The recombinant enzyme was purified 5-fold to apparent homogeneity and characterized. It has a subunit molecular mass of approx. 45000 Da. The Vmax value obtained using a radioactive assay with ammonia and l-[G-3H]glutamic acid as substrates was 15.9 micromol/min per mg, 40% higher than that obtained in the colorimetric assay (9.9 micromol/min per mg) with hydroxylamine replacing ammonia as a substrate. Km values for glutamate were 3.0 mM and 3.5 mM, and for ATP they were 2.0 mM and 2. 9 mM for the radioactive and spectrophotometric assays respectively. The Km for ammonia in the radioactive assay was 0.15 mM. The midpoint of thermal inactivation was 49.7 degrees C. Hydroxylamine, Mg(II) and Mg(II)-ATP stabilized the enzyme against thermal inactivation, whereas ATP promoted inactivation. The pure enzyme is stable for several months in storage and provides a source for additional studies, including X-ray crystallography.
已构建出一种用于人谷氨酰胺合成酶(EC 6.3.1.2)的细菌表达系统,该系统可产生约60毫克的酶(占细菌可溶性蛋白的20%),每升培养物可获得约8毫克的纯化酶。重组酶经5倍纯化至表观均一性并进行了表征。其亚基分子量约为45000道尔顿。以氨和l-[G-3H]谷氨酸为底物进行放射性测定时,获得的Vmax值为每毫克15.9微摩尔/分钟,比以羟胺替代氨作为底物进行比色测定(每毫克9.9微摩尔/分钟)时高40%。放射性测定和分光光度法测定中谷氨酸的Km值分别为3.0毫摩尔和3.5毫摩尔,ATP的Km值分别为2.0毫摩尔和2.9毫摩尔。放射性测定中氨的Km值为0.15毫摩尔。热失活的中点温度为49.7摄氏度。羟胺、Mg(II)和Mg(II)-ATP可使酶稳定,防止热失活,而ATP则促进失活。纯酶在储存中可稳定数月,为包括X射线晶体学在内的进一步研究提供了来源。