Rhee S G, Chock P B, Wedler F C, Sugiyama Y
J Biol Chem. 1981 Jan 25;256(2):644-8.
Although glutamine synthetase from Escherichia coli is composed of 12 identical subunits, there is no evidence that homologous subunit interactions occur in fully unadenylylated or fully adenylylated enzyme. Meister and co-workers (Manning, J. M., Moore, S., Rowe, W. B., and Meister, A. (1969) Biochemistry 8, 2681-2685) have shown that L-methionine-S-sulfoximine, one of the four diastereomers of methionine sulfoximine, preferentially inhibits glutamine synthetase irreversibly in the presence of ATP, due to the formation of tightly bound products, ADP, and methionine sulfoximine phosphate. Using highly purified unadenylylated glutamine synthetase and the two resolved diastereomers of L-methionine-S,R-sulfoximine, we have studied both the kinetics of glutamine synthetase inactivation in the presence of excess methionine sulfoximine and ATP, and the binding of methionine sulfoximine to the enzyme. The results reveal that (a) the apparent first order rate constant of irreversible inactivation by the S isomer decreases progressively from the expected first order rate, indicating that an inactivated subunit retards the reactivity of its neighboring subunits toward methionine sulfoximine and ATP; (b) the R isomer does not inactivate glutamine synthetase irreversibly in the presence of ATP; however, the R isomer is capable of protecting the enzyme temporarily from the irreversible inhibition by the S isomer; and (c) the binding of the S isomer monitored by changes in protein fluorescence exhibits an apparent negative cooperative binding isotherm, whereas the R isomer yields an apparent positive cooperative pattern.
尽管来自大肠杆菌的谷氨酰胺合成酶由12个相同的亚基组成,但没有证据表明在完全未腺苷酸化或完全腺苷酸化的酶中存在同源亚基相互作用。梅斯特及其同事(曼宁,J.M.,摩尔,S.,罗,W.B.,和梅斯特,A.(1969年)《生物化学》8,2681 - 2685)已经表明,甲硫氨酸亚砜亚胺的四种非对映异构体之一L - 甲硫氨酸 - S - 亚砜亚胺,在ATP存在下优先不可逆地抑制谷氨酰胺合成酶,这是由于形成了紧密结合的产物ADP和甲硫氨酸亚砜亚胺磷酸盐。使用高度纯化的未腺苷酸化的谷氨酰胺合成酶以及L - 甲硫氨酸 - S,R - 亚砜亚胺的两种拆分的非对映异构体,我们研究了在过量甲硫氨酸亚砜亚胺和ATP存在下谷氨酰胺合成酶失活的动力学以及甲硫氨酸亚砜亚胺与该酶的结合。结果表明:(a)S异构体不可逆失活的表观一级速率常数从预期的一级速率逐渐降低,这表明失活的亚基会阻碍其相邻亚基对甲硫氨酸亚砜亚胺和ATP的反应性;(b)R异构体在ATP存在下不会不可逆地使谷氨酰胺合成酶失活;然而,R异构体能够暂时保护该酶免受S异构体的不可逆抑制;(c)通过蛋白质荧光变化监测的S异构体的结合表现出明显的负协同结合等温线,而R异构体则产生明显的正协同模式。