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活性位点配体对大肠杆菌十二聚体谷氨酰胺合成酶可逆性部分解折叠的热力学效应:量热研究

Thermodynamic effects of active-site ligands on the reversible, partial unfolding of dodecameric glutamine synthetase from Escherichia coli: calorimetric studies.

作者信息

Zolkiewski M, Ginsburg A

机构信息

Laboratory of Biochemistry, National Heart, Lung and Blood Institute, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Biochemistry. 1992 Dec 8;31(48):11991-2000. doi: 10.1021/bi00163a006.

Abstract

Dodecameric glutamine synthetase (GS) from Escherichia coli undergoes reversible, thermally induced partial unfolding without subunit dissociation. A single endotherm for Mn.GS (+/- active-site ligands) in the presence of 1 mM free Mn2+ and 100 mM KCl at pH 7 is observed by differential scanning calorimetry (DSC). Previous deconvolutions of DSC data for Mn.GS showed only two two-state transitions (with similar tm values; 51.6 +/- 2 degrees C), and indicated that cooperative interactions link partial unfolding reactions of all subunits within the Mn.enzyme dodecamer [Ginsburg, A., & Zolkiewski, M. (1991) Biochemistry 30, 9421]. A net uptake of 8.0 equiv of H+ by Mn.GS occurs during partial unfolding, as determined in the present DSC experiments conducted with four buffers having different heats of protonation at 50 degrees C. These data gave a value of 176 +/- 12 kcal (mol of dodecamer)-1 for delta Hcal corrected for buffer protonation. L-Glutamine and L-Met-(SR)-sulfoximine stabilize the Mn.GS dodecamer through the free energies of ligand binding, and these were shown to be partially and totally released, respectively, from the 12 active sites at high temperature. Ligand effects on Tm values from DSC were similar to those from spectral measurements of Trp and Tyr exposures in two subunit domains. Effects of varying [ADP] on DSC profiles of Mn.GS were complex; Tm is increased by low [ADP] and decreased by > 100 microM free ADP. This is due to the exposure of an additional low-affinity ADP binding site per GS subunit at high temperature with log K1' = 4.3 and log K2' = 3.6 at 60 degrees C relative to log K' = 5.5 for ADP binding at 30 degrees C, as determined by isothermal calorimetric and fluorescence titrations. Moreover, delta Hcal at > 27% saturation with ADP (corrected for ADP binding/dissociation) is approximately 80-100 kcal/mol more than in the absence of ligands. Changes in domain interactions could result from ADP bridging subunit contacts in the dodecamer. Each of the active-site ligands investigated here produces different effects on DSC profiles without uncoupling the extremely cooperative, partial unfolding reactions in the Mn.GS dodecamer.

摘要

来自大肠杆菌的十二聚体谷氨酰胺合成酶(GS)会发生可逆的、热诱导的部分解折叠,且亚基不发生解离。在pH 7、1 mM游离Mn²⁺和100 mM KCl存在的条件下,通过差示扫描量热法(DSC)观察到Mn.GS(±活性位点配体)有一个单一的吸热峰。先前对Mn.GS的DSC数据进行的去卷积分析仅显示出两个两态转变(具有相似的熔解温度值;51.6±2℃),并表明协同相互作用将Mn - 酶十二聚体内所有亚基的部分解折叠反应联系在一起[金斯堡,A.,& 佐尔基耶夫斯基,M.(1991年)《生物化学》30,9421]。在部分解折叠过程中,Mn.GS净吸收8.0当量的H⁺,这是在本DSC实验中用四种在50℃下具有不同质子化热的缓冲液测定的。这些数据得出经缓冲液质子化校正后的ΔHcal值为176±12千卡/(十二聚体摩尔)⁻¹。L - 谷氨酰胺和L - 甲硫氨酸 - (SR) - 亚砜亚胺通过配体结合自由能稳定Mn.GS十二聚体,并且已表明它们分别在高温下从12个活性位点部分和完全释放。DSC测得的配体对熔解温度值的影响与两个亚基结构域中色氨酸和酪氨酸暴露的光谱测量结果相似。改变[ADP]对Mn.GS的DSC图谱的影响很复杂;低[ADP]会使熔解温度升高,而游离ADP>100μM时则会使其降低。这是由于在高温下每个GS亚基会暴露一个额外的低亲和力ADP结合位点,在60℃时log K1' = 4.3,log K2' = 3.6,而在30℃时ADP结合的log K' = 5.5,这是通过等温量热法和荧光滴定法测定的。此外,在ADP饱和度>27%时(经ADP结合/解离校正)的ΔHcal比无配体时大约高80 - 100千卡/摩尔。结构域相互作用的变化可能是由于ADP在十二聚体中桥接亚基接触所致。这里研究的每个活性位点配体对DSC图谱都产生不同的影响,但不会使Mn.GS十二聚体中极其协同的部分解折叠反应解偶联。

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