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使用分析凝胶色谱法分析大肠杆菌天冬氨酸转氨甲酰酶的三级和四级结构变化。

Use of analytical gel chromatography to analyze tertiary and quaternary structural changes in E. coli aspartate transcarbamylase.

作者信息

Bromberg S, Burz D S, Allewell N M

机构信息

Department of Molecular Biology and Biochemistry, Wesleyan University, Middletown, CT 06457.

出版信息

J Biochem Biophys Methods. 1990 Jan;20(2):143-56. doi: 10.1016/0165-022x(90)90073-l.

Abstract

E. coli aspartate transcarbamylase (ATCase) is a large (310 kDa) protein that undergoes major changes in quaternary structure when substrates and regulatory nucleotides bind. We have used analytical gel chromatography to detect quaternary structure changes in both the holoenzyme and its catalytic subunit (c3), to characterize the quaternary structure of single site mutant proteins and to monitor urea-induced dissociation and unfolding of c3. Binding of the bisubstrate analog PALA (N-(phosphonacetyl)-L-aspartate) to ATCase and c3 has been shown to alter s20.w by -3.3% and + 1.4%, respectively [Howlett, G.J. and Schachman, H.K. (1977), Biochemistry 23, 5077-5083]. The corresponding changes in the chromatographic partition coefficient (sigma) are -2.6 +/- 0.3% and 5.5 +/- 1.9% on Sephacryl S400HR and S200, respectively. Partition coefficients of mutant ATCases with single site mutations in the c chain differ from those of the wild-type protein by +/- 0.5% in small zone experiments; for example, mutations Arg 269----Gly and Glu 239----Gln alter the partition coefficient by 0.4% and -0.5%, respectively. The partition coefficient of mutant Glu 50----Gln is identical to the wild type enzyme. In the presence of saturating PALA, partition coefficients of Glu 50----Gln and Arg 269----Gly, but not Glu 239----Gln are identical to those of the wild type. Results for Glu 239----Gln are consistent with measurements of activity, small angle X-ray scattering and sedimentation coefficient that indicate that mutations at this site shift the quaternary structure towards the R state [Ladjimi and Kantrowitz (1988), Biochemistry 27, 276-83; Vachette and Hervé, cited by Kantrowitz and Lipscomb (1988), Science 241, 669-674; Newell and Schachman (1988), FASEB J. 2, A551]. Results for Glu 50----Gln are also consistent with measurements of activity (Ladjimi et al. (1988), Biochemistry 27, 268-276). The changes in tertiary and quaternary structure that result from urea-induced denaturation of c3 result in larger changes in the partition coefficient. Dissociation into folded monomers in 1-1.75 M urea is accompanied by a 4.6% increase in partition coefficient, while denaturation at greater than 5 M urea gives rise to a 43% decrease on S-300 Sephacryl. The bisubstrate analog PALA suppresses dissociation and increases the cooperativity of the unfolding reaction.

摘要

大肠杆菌天冬氨酸转氨甲酰酶(ATCase)是一种大型蛋白质(310 kDa),当底物和调节核苷酸结合时,其四级结构会发生重大变化。我们使用分析凝胶色谱法来检测全酶及其催化亚基(c3)的四级结构变化,表征单点突变蛋白的四级结构,并监测尿素诱导的c3解离和去折叠。双底物类似物PALA(N-(膦酰乙酰基)-L-天冬氨酸)与ATCase和c3的结合已显示分别使s20.w改变-3.3%和+1.4%[豪利特,G.J.和沙克曼,H.K.(1977年),《生物化学》23卷,5077 - 5083页]。在Sephacryl S400HR和S200上,色谱分配系数(sigma)的相应变化分别为-2.6±0.3%和5.5±1.9%。在小区域实验中,c链中具有单点突变的突变型ATCase的分配系数与野生型蛋白的分配系数相差±0.5%;例如,突变Arg 269→Gly和Glu 239→Gln分别使分配系数改变0.4%和-0.5%。突变Glu 50→Gln的分配系数与野生型酶相同。在饱和PALA存在下,Glu 50→Gln和Arg 269→Gly的分配系数与野生型相同,但Glu 239→Gln的不同。Glu 239→Gln的结果与活性、小角X射线散射和沉降系数的测量结果一致,这些测量表明该位点的突变使四级结构向R态转变[拉吉米和坎特罗维茨(1988年),《生物化学》27卷,276 - 283页;瓦谢特和埃尔韦,见坎特罗维茨和利普斯科姆(1988年)引用,《科学》241卷,669 - 674页;纽厄尔和沙克曼(1988年),《美国实验生物学会联合会杂志》2卷,A551页]。Glu 50→Gln的结果也与活性测量结果一致(拉吉米等人(1988年),《生物化学》27卷,268 - 276页)。尿素诱导c3变性导致的三级和四级结构变化导致分配系数有更大变化。在1 - 1.75 M尿素中解离成折叠单体伴随着分配系数增加4.6%,而在大于5 M尿素中变性在S - 300 Sephacryl上导致分配系数降低43%。双底物类似物PALA抑制解离并增加去折叠反应的协同性。

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