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谷胱甘肽转移酶中的单体 - 二聚体平衡:一次关键的重新审视

Monomer-dimer equilibrium in glutathione transferases: a critical re-examination.

作者信息

Fabrini Raffaele, De Luca Anastasia, Stella Lorenzo, Mei Giampiero, Orioni Barbara, Ciccone Sarah, Federici Giorgio, Lo Bello Mario, Ricci Giorgio

机构信息

Department of Chemical Sciences and Technologies, University of Rome Tor Vergata, 00133 Rome, Italy.

出版信息

Biochemistry. 2009 Nov 3;48(43):10473-82. doi: 10.1021/bi901238t.

Abstract

Glutathione transferases (GSTs) are dimeric enzymes involved in cell detoxification versus many endogenous toxic compounds and xenobiotics. In addition, single monomers of GSTs appear to be involved in particular protein-protein interactions as in the case of the pi class GST that regulates the apoptotic process by means of a GST-c-Jun N-terminal kinase complex. Thus, the dimer-monomer transition of GSTs may have important physiological relevance, but many studies reached contrasting conclusions both about the modality and extension of this event and about the catalytic competence of a single subunit. This paper re-examines the monomer-dimer question in light of novel experiments and old observations. Recent papers claimed the existence of a predominant monomeric and active species among pi, alpha, and mu class GSTs at 20-40 nM dilution levels, reporting dissociation constants (K(d)) for dimeric GST of 5.1, 0.34, and 0.16 microM, respectively. However, we demonstrate here that only traces of monomers could be found at these concentrations since all these enzymes display K(d) values of <<1 nM, values thousands of times lower than those reported previously. Time-resolved and steady-state fluorescence anisotropy experiments, two-photon fluorescence correlation spectroscopy, kinetic studies, and docking simulations have been used to reach such conclusions. Our results also indicate that there is no clear evidence of the existence of a fully active monomer. Conversely, many data strongly support the idea that the monomeric form is scarcely active or fully inactive.

摘要

谷胱甘肽转移酶(GSTs)是二聚体酶,参与细胞对多种内源性有毒化合物和外源性物质的解毒过程。此外,GSTs的单个单体似乎参与了特定的蛋白质-蛋白质相互作用,例如π类GST通过GST-c-Jun N端激酶复合物调节凋亡过程。因此,GSTs的二聚体-单体转变可能具有重要的生理意义,但许多研究在这一事件的方式和范围以及单个亚基的催化能力方面得出了相互矛盾的结论。本文根据新的实验和以往的观察结果重新审视了单体-二聚体问题。最近的论文声称,在20-40 nM稀释水平下,π、α和μ类GSTs中存在主要的单体和活性物种,报告的二聚体GST的解离常数(K(d))分别为5.1、0.34和0.16 μM。然而,我们在此证明,在这些浓度下只能发现微量的单体,因为所有这些酶的K(d)值均<<1 nM,比之前报道的值低数千倍。时间分辨和稳态荧光各向异性实验、双光子荧光相关光谱、动力学研究和对接模拟已用于得出这些结论。我们的结果还表明,没有明确证据表明存在完全活性的单体。相反,许多数据强烈支持单体形式几乎没有活性或完全无活性的观点。

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