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变构激活剂ATP会诱导一种在活性位点关闭方面存在缺陷的突变天冬氨酸转氨甲酰酶的四级结构发生底物依赖性改变。

The allosteric activator ATP induces a substrate-dependent alteration of the quaternary structure of a mutant aspartate transcarbamoylase impaired in active site closure.

作者信息

Baker D P, Fetler L, Vachette P, Kantrowitz E R

机构信息

Merkert Chemistry Center, Department of Chemistry, Boston College, Chestnut Hill, Massachusetts 02167-3860, USA.

出版信息

Protein Sci. 1996 Nov;5(11):2276-86. doi: 10.1002/pro.5560051114.

Abstract

Aspartate transcarbamoylase from Escherichia coli shows homotropic cooperativity for aspartate as well as heterotropic regulation by nucleotides. Structurally, it consists of two trimeric catalytic subunits and three dimeric regulatory subunits, each chain being comprised of two domains. Glu-50 and Ser-171 are involved in stabilizing the closed conformation of the catalytic chain. Replacement of Glu-50 or Ser-171 by Ala in the holoenzyme has been shown previously to result in marked decreases in the maximal observed specific activity, homotropic cooperativity, and affinity for aspartate (Dembowski NJ, Newton CJ, Kantrowitz ER, 1990, Biochemistry 29:3716-3723; Newton CJ, Kantrowitz ER, 1990, Biochemistry 29:1444-1451). We have constructed a double mutant enzyme combining both mutations. The resulting Glu-50/ser-171-->Ala enzyme is 9-fold less active than the Ser-171-->Ala enzyme, 69-fold less active than the Glu-50-->Ala enzyme, and shows 1.3-fold and 1.6-fold increases in the [S]0.5Asp as compared to the Ser-171-->Ala and Glu-50-->Ala enzymes, respectively. However, the double mutant enzyme exhibits some enhancement of homotropic cooperativity with respect to aspartate, relative to the single mutant enzymes. At subsaturating concentrations of aspartate, the Glu-50/Ser-171 -->Ala enzyme is activated less by ATP than either the Glu-50-->Ala or Ser-171-->Ala enzyme, whereas CTP inhibition is intermediate between that of the two single mutants. As opposed to the wild-type enzyme, the Glu-50/Ser-171 -->Ala enzyme is activated by ATP and inhibited by CTP at saturating concentrations of aspartate. Structural analysis of the Ser-171-->Ala and Glu-50/Ser-171-->Ala enzymes by solution X-ray scattering indicates that both mutants exist in the same T quaternary structure as the wild-type enzyme in the absence of ligands, and in the same R quaternary structure in the presence of saturating N-(phosphonoacetyl)-L-aspartate. However, saturating concentrations of carbamoyl phosphate and succinate are unable to convert a significant fraction of either mutant enzyme population to the R quaternary structure, as has been observed previously for the Glu-50-->Ala enzyme. The curves for both the Ser-171-->Ala and Glu-50/Ser-171-->Ala enzymes obtained in the presence of substoichiometric amounts of PALA are linear combinations of the two extreme T and R states. The structural consequences of nucleotide binding to these two enzymes were also investigated. Most surprisingly, the direction and amplitude of the effect of ATP upon the double mutant enzyme were shown to vary depending upon the substrate analogue used.

摘要

来自大肠杆菌的天冬氨酸转氨甲酰酶对天冬氨酸表现出同促协同效应,同时受核苷酸的异促调节。在结构上,它由两个三聚体催化亚基和三个二聚体调节亚基组成,每条链由两个结构域组成。Glu-50和Ser-171参与稳定催化链的闭合构象。先前已表明,在全酶中将Glu-50或Ser-171替换为丙氨酸会导致最大观测比活性、同促协同效应和对天冬氨酸的亲和力显著降低(Dembowski NJ,Newton CJ,Kantrowitz ER,1990,《生物化学》29:3716 - 3723;Newton CJ,Kantrowitz ER,1990,《生物化学》29:1444 - 1451)。我们构建了一个包含这两种突变的双突变酶。所得的Glu-50/ser-171→Ala酶的活性比Ser-171→Ala酶低9倍,比Glu-50→Ala酶低69倍,并且与Ser-171→Ala酶和Glu-50→Ala酶相比,[S]0.5Asp分别增加了1.3倍和1.6倍。然而,相对于单突变酶,双突变酶在天冬氨酸方面表现出同促协同效应的一些增强。在天冬氨酸亚饱和浓度下,Glu-50/Ser-171→Ala酶被ATP激活的程度低于Glu-50→Ala酶或Ser-171→Ala酶,而CTP抑制作用介于两种单突变体之间。与野生型酶不同,在天冬氨酸饱和浓度下,Glu-50/Ser-171→Ala酶被ATP激活并被CTP抑制。通过溶液X射线散射对Ser-171→Ala和Glu-50/Ser-171→Ala酶进行结构分析表明,在没有配体的情况下,两种突变体与野生型酶一样以相同的T四级结构存在,在存在饱和N-(膦酰乙酰基)-L-天冬氨酸的情况下以相同的R四级结构存在。然而,与先前对Glu-50→Ala酶的观察结果一样,饱和浓度的氨甲酰磷酸和琥珀酸无法将相当一部分的任何一种突变酶群体转化为R四级结构。在亚化学计量量的PALA存在下获得的Ser-171→Ala和Glu-50/Ser-171→Ala酶的曲线是两种极端T态和R态的线性组合。还研究了核苷酸与这两种酶结合的结构后果。最令人惊讶的是,ATP对双突变酶的作用方向和幅度显示会因所使用的底物类似物而异。

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