首页> 外文期刊>Biochemistry >Conformational changes in the alpha-subunit coupled to binding of the beta2-subunit of tryptophan synthase from Escherichia coli: crystal structure of the tryptophan synthase alpha-subunit alone.
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Conformational changes in the alpha-subunit coupled to binding of the beta2-subunit of tryptophan synthase from Escherichia coli: crystal structure of the tryptophan synthase alpha-subunit alone.

机译:与大肠杆菌色氨酸合酶β2-亚基结合结合的α-亚基构象变化:仅色氨酸合酶α-亚基的晶体结构。

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摘要

When the tryptophan synthase alpha- and beta(2)-subunits combine to form the alpha(2)beta(2)-complex, the enzymatic activity of each subunit is stimulated by 1-2 orders of magnitude. To elucidate the structural basis of this mutual activation, it is necessary to determine the structures of the alpha- and beta-subunits alone and together with the alpha(2)beta(2)-complex. The crystal structures of the tryptophan synthase alpha(2)beta(2)-complex from Salmonella typhimurium (Stalpha(2)beta(2)-complex) have already been reported. However, the structures of the subunit alone from mesophiles have not yet been determined. The structure of the tryptophan synthase alpha-subunit alone from Escherichia coli (Ecalpha-subunit) was determined by an X-ray crystallographic analysis at 2.3 A, which is the first report on the subunits alone from the mesophiles. The biggest difference between the structures of the Ecalpha-subunit alone and the alpha-subunit in the Stalpha(2)beta(2)-complex (Stalpha-subunit) was as follows. Helix 2' in the Stalpha-subunit, including an active site residue (Asp60), was changed to a flexible loop in the Ecalpha-subunit alone. The conversion of the helix to a loop resulted in the collapse of the correct active site conformation. This region is also an important part for the mutual activation in the Stalpha(2)beta(2)-complex and interaction with the beta-subunit. These results suggest that the formation of helix 2'that is essential for the stimulation of the enzymatic activity of the alpha-subunit is constructed by the induced-fit mode involved in conformational changes upon interaction between the alpha- and beta-subunits. This also confirms the prediction of the conformational changes based on the thermodynamic analysis for the association between the alpha- and beta-subunits.
机译:当色氨酸合酶α-和β(2)-亚基结合形成α(2)β(2)-复合体时,每个亚基的酶促活性被刺激1-2个数量级。为了阐明这种相互激活的结构基础,有必要确定单独的alpha-和beta-亚基的结构,以及与alpha(2)beta(2)-复合物一起确定的结构。从鼠伤寒沙门氏菌(Stalpha(2)beta(2)复杂)色氨酸合酶α(2)beta(2)-复杂的晶体结构已被报道。然而,尚未确定仅来自嗜温菌的亚基的结构。通过X射线晶体学分析在2.3A下确定了仅来自大肠杆菌的色氨酸合酶α-亚基的结构(Ecalpha-亚基),这是关于嗜温菌单独的亚基的首次报道。单独的Ecalpha亚基和Stalpha(2)beta(2)复杂(Stalpha亚基)中的alpha亚基之间的最大区别如下。 Stalpha亚基中的2'螺旋(包括一个活性位点残基(Asp60))被更改为一个单独的Ecalpha亚基中的柔性环。螺旋向环的转化导致正确的活性位点构象崩溃。此区域也是Stalpha(2)beta(2)复杂中的相互激活以及与beta亚基相互作用的重要组成部分。这些结果表明,对于α-亚基的酶促活性至关重要的螺旋2'的形成是通过α-和β-亚基之间相互作用时参与构象变化的诱导拟合模式构建的。这也证实了基于对α-亚基和β-亚基之间的缔合的热力学分析对构象变化的预测。

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