首页> 外文期刊>Biochemistry >Structural and mechanistic changes along an engineered path from metallo to nonmetallo 3-deoxy-D-manno-octulosonate 8-phosphate synthases.
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Structural and mechanistic changes along an engineered path from metallo to nonmetallo 3-deoxy-D-manno-octulosonate 8-phosphate synthases.

机译:沿着金属甲醚至非金属3-脱氧-D-甘露糖苷酸8-磷酸合成酶的结构和机械变化。

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摘要

There are two classes of KDO8P synthases characterized respectively by the presence or absence of a metal in the active site. The nonmetallo KDO8PS from Escherichia coli and the metallo KDO8PS from Aquifex aeolicus are the best characterized members of each class. All amino acid residues that make important contacts with the substrates are conserved in both enzymes with the exception of Pro-10, Cys-11, Ser-235, and Gln-237 of the A. aeolicus enzyme, which correspond respectively to Met-25, Asn-26, Pro-252, and Ala-254 in the E. coli enzyme. Interconversion between the two forms of KDO8P synthases can be achieved by substituting the metal-coordinating cysteine of metallo synthases with the corresponding asparagine of nonmetallo synthases, and vice versa. In this report we describe the structural changes elicited by the C11N mutation and by three combinations of mutations (P10M/C11N, C11N/S235P/Q237A, and P10M/C11N/S235P/Q237A) situated along possible evolutionary paths connecting the A. aeolicus and theE. coli enzyme. All four mutants are not capable of binding metal and lack the structural asymmetry among subunits with regard to substrate binding and conformation of the L7 loop, which is typical of A. aeolicus wild-type KDO8PS but is absent in the E. coli enzyme. Despite the lack of the active site metal, the mutant enzymes display levels of activity ranging from 46% to 24% of the wild type. With the sole exception of the quadruple mutant, metal loss does not affect the thermal stability of KDO8PS. The free energy of unfolding in water is also either unchanged or even increased in the mutant enzymes, suggesting that the primary role of the active site metal in A. aeolicus KDO8PS is not to increase the enzyme stability. In all four mutants A5P binding displaces a water molecule located on the si side of PEP. In particular, in the double and triple mutant, A5P binds with the aldehyde carbonyl in hydrogen bond distance of Asn-11, while in the wild type this functional group points away from Cys-11. This alternative conformation of A5P is likely to have functional significance as it resembles the conformation of the acyclic reaction intermediate, which is observed here for the first time in some of the active sites of the triple mutant. The direct visualization of this intermediate by X-ray crystallography confirms earlier mechanistic models of KDO8P synthesis. In particular, the configuration of the C2 chiral center of the intermediate supports a model of the reaction in nonmetallo KDO8PS, in which water attacks an oxocarbenium ion or PEP from the si side of C2. Several explanations are offered to reconcile this observation with the fact that no water molecule is observed at this position in the mutant enzymes in the presence of both PEP and A5P. Significant differences were observed between the wild-type and the mutant enzymes in the Km values for PEP and A5P and in the Kd values for inorganic phosphate and R5P. These differences may reflect an evolutionary adaptation of metallo and nonmetallo KDO8PS's to the cellular concentrations of these metabolites in their respective hosts.
机译:有两种阶类KDO8P合成酶,分别在活性位点中的存在或不存在金属来表征。来自大肠杆菌的非更换KDO8PS和来自Aquifex Aeolicus的Metallo KDO8PS是每个班级的最佳特征成员。所有氨基酸残基与底物中的所有氨基酸残基分别除以Pro-10,Cys-11,Ser-235和A.Aeolicus酶的GLN-237,分别对应于25次,在大肠杆菌酶中,Asn-26,Pro-252和Ala-254。通过用非金属合成酶的相应天冬酰胺代替金属协调金属协调半胱氨酸,可以实现两种形式的KDO8P合成酶之间的相互互连,反之亦然。在本报告中,我们描述了C11N突变引发的结构变化以及突变的三种突变组合(P10M / C11N,C11N / S235P / Q237A和P10M / C11N / S235P / Q237A)沿着连接A. Aeolicus的可能的进化路径你。大肠杆菌酶。所有四个突变体都不能够结合金属,并且在L7环的底物结合和构象方面缺乏亚基之间的结构不对称性,这是A.ααααnour型KDO8PS的典型,但在大肠杆菌酶中不存在。尽管缺乏活性位点金属,但突变酶显示出野生型46%至24%的活性水平。随着四重突变体的唯一例外,金属损耗不会影响KDO8PS的热稳定性。在水中展开的自由能量也在突变酶中不变或甚至增加,表明A-甲基A8PS中活性位点金属的主要作用是不增加酶稳定性的。在所有四个突变体中,A5P结合取代了位于Pep的Si侧的水分子。特别地,在双突变体中,A5P与ASN-11的氢键距离中的醛羰基结合,而在野生型中,该官能团远离Cys-11。这种A5P的这种替代构象可能具有功能意义,因为它类似于无环反应中间体的构象,这在此处在三重突变体的一些活性位点中首次观察到。通过X射线晶体术的这种中间体的直接可视化证实了KDO8P合成的早期机械模型。特别地,中间体C2手性中心的构型支持非金属KDO8PS中的反应模型,其中水从C2的Si侧攻击氧化羰烯离子或PEP。提供了几种解释来调和这种观察,以至于在PEP和A5P的存在下在突变酶中没有在该位置观察到水分子。在PEP和A5p的KM值中的野生型和突变酶之间观察到显着差异,以及无机磷酸盐和R5P的KD值。这些差异可能反映了金属和非金属KDO8PS对它们各自宿主中这些代谢物的细胞浓度的进化调整。

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