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色氨酰 - tRNA合成酶介导的ATP结合能与构象自由能的相互转换:与开放和闭合的预过渡态构象结合的ATP结构

Interconversion of ATP binding and conformational free energies by tryptophanyl-tRNA synthetase: structures of ATP bound to open and closed, pre-transition-state conformations.

作者信息

Retailleau Pascal, Huang Xin, Yin Yuhui, Hu Mei, Weinreb Violetta, Vachette Patrice, Vonrhein Clemens, Bricogne Gérard, Roversi Pietro, Ilyin Valentin, Carter Charles W

机构信息

Department of Biochemistry and Biophysics, University of North Carolina, Mary Ellen Jones Bldg. CB# 7260, Chapel Hill, NC 27599-7260, USA.

出版信息

J Mol Biol. 2003 Jan 3;325(1):39-63. doi: 10.1016/s0022-2836(02)01156-7.

Abstract

Binding ATP to tryptophanyl-tRNA synthetase (TrpRS) in a catalytically competent configuration for amino acid activation destabilizes the enzyme structure prior to forming the transition state. This conclusion follows from monitoring the titration of TrpRS with ATP by small angle solution X-ray scattering, enzyme activity, and crystal structures. ATP induces a significantly smaller radius of gyration at pH=7 with a transition midpoint at approximately 8mM. A non-reciprocal dependence of Trp and ATP dissociation constants on concentrations of the second substrate show that Trp binding enhances affinity for ATP, while the affinity for Trp falls with the square of the [ATP] over the same concentration range ( approximately 5mM) that induces the more compact conformation. Two distinct TrpRS:ATP structures have been solved, a high-affinity complex grown with 1mM ATP and a low-affinity complex grown at 10mM ATP. The former is isomorphous with unliganded TrpRS and the Trp complex from monoclinic crystals. Reacting groups of the two individually-bound substrates are separated by 6.7A. Although it lacks tryptophan, the low-affinity complex has a closed conformation similar to that observed in the presence of both ATP and Trp analogs such as indolmycin, and resembles a complex previously postulated to form in the closely-related TyrRS upon induced-fit active-site assembly, just prior to catalysis. Titration of TrpRS with ATP therefore successively produces structurally distinct high- and low-affinity ATP-bound states. The higher quality X-ray data for the closed ATP complex (2.2A) provide new structural details likely related to catalysis, including an extension of the KMSKS loop that engages the second lysine and serine residues, K195 and S196, with the alpha and gamma-phosphates; interactions of the K111 side-chain with the gamma-phosphate; and a water molecule bridging the consensus sequence residue T15 to the beta-phosphate. Induced-fit therefore strengthens active-site interactions with ATP, substantially intensifying the interaction of the KMSKS loop with the leaving PP(i) group. Formation of this conformation in the absence of a Trp analog implies that ATP is a key allosteric effector for TrpRS. The paradoxical requirement for high [ATP] implies that Gibbs binding free energy is stored in an unfavorable protein conformation and can then be recovered for useful purposes, including catalysis in the case of TrpRS.

摘要

以催化活性构象将ATP与色氨酰 - tRNA合成酶(TrpRS)结合以进行氨基酸活化,会在形成过渡态之前使酶结构不稳定。这一结论来自于通过小角溶液X射线散射、酶活性和晶体结构监测TrpRS与ATP的滴定过程。在pH = 7时,ATP诱导的回转半径显著减小,转变中点约为8mM。色氨酸(Trp)和ATP解离常数对第二种底物浓度的非相互依赖性表明,Trp结合增强了对ATP的亲和力,而在诱导更紧密构象的相同浓度范围(约5mM)内,对Trp的亲和力随[ATP]的平方下降。已经解析出两种不同的TrpRS:ATP结构,一种是在1mM ATP条件下生长的高亲和力复合物,另一种是在10mM ATP条件下生长的低亲和力复合物。前者与未结合配体的TrpRS以及单斜晶体中的Trp复合物同晶型。两个单独结合的底物的反应基团相距6.7埃。尽管缺乏色氨酸,但低亲和力复合物具有类似于在同时存在ATP和色氨酸类似物(如吲哚霉素)时观察到的封闭构象,并且类似于先前推测在紧密相关的酪氨酰 - tRNA合成酶(TyrRS)诱导契合活性位点组装后、催化作用即将发生之前形成的复合物。因此,用ATP滴定TrpRS会相继产生结构上不同的高亲和力和低亲和力ATP结合状态。封闭的ATP复合物(2.2埃)的更高质量X射线数据提供了可能与催化作用相关的新结构细节,包括与第二个赖氨酸和丝氨酸残基K195和S196结合的KMSKS环的延伸,其与α和γ - 磷酸基团相互作用;K111侧链与γ - 磷酸基团的相互作用;以及一个水分子将共有序列残基T15与β - 磷酸基团相连。因此,诱导契合加强了活性位点与ATP的相互作用,显著增强了KMSKS环与离去的焦磷酸(PP(i))基团的相互作用。在没有色氨酸类似物的情况下形成这种构象意味着ATP是TrpRS的关键变构效应物。对高[ATP]的矛盾需求意味着吉布斯结合自由能存储在不利的蛋白质构象中,然后可以被回收用于有用的目的,包括在TrpRS的情况下进行催化作用。

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