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首页> 外文期刊>Journal of Molecular Biology >Glycine-rich loop of mitochondrial processing peptidase alpha-subunit is responsible for substrate recognition by a mechanism analogous to mitochondrial receptor Tom20.
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Glycine-rich loop of mitochondrial processing peptidase alpha-subunit is responsible for substrate recognition by a mechanism analogous to mitochondrial receptor Tom20.

机译:线粒体加工肽酶α-亚单位的富含甘氨酸的环通过类似于线粒体受体Tom20的机制负责底物识别。

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摘要

Tryptophan fluorescence measurements were used to characterize the local dynamics of the highly conserved glycine-rich loop (GRL) of the mitochondrial processing peptidase (MPP) alpha-subunit in the presence of the substrate precursor. Reporter tryptophan residue was introduced into the GRL of the yeast alpha-MPP (Y299W) or at a proximal site (Y303W). Time-resolved and steady-state fluorescence spectroscopy demonstrated that for Trp299, the primary contact with the yeast malate dehydrogenase precursor evokes a change of the local GRL mobility. Moreover, time-resolved measurements showed that a functionless alpha-MPP with a single-residue deletion in the loop (Y303W/DeltaG292) is defective particularly in the primary contact with substrate. Thus, the GRL was proved to be part of a contact site of the enzyme specifically recognizing the substrate. Regarding the surface exposure and presence of the hydrophobic patches within the GRL, we proposed a functional analogy between the presequence recognition by the hydrophobic binding groove of the Tom20 mitochondrial import receptor and the GRL of the alpha-MPP. A molecular dynamics (MD) simulation of the MPP-substrate peptide complex model was employed to test this hypothesis. The initial positioning and conformation of the substrate peptide in the model fitting were chosen based on the analogy of its interaction with the Tom20 binding groove. MD simulation confirmed the stability of the proposed interaction and showed also a decrease in GRL flexibility in the presence of substrate, in agreement with fluorescence measurements. Moreover, conserved substrate hydrophobic residues in positions +1 and -4 to the cleavage site remain in close contact with the side chains of the GRL during the entire production part of MD simulation as stabilizing points of the hydrophobic interaction. We conclude that the GRL of the MPP alpha-subunit is the crucial evolutional outcome of the presequence recognition by MPP and represents a functional parallel with Tom20 import receptor.
机译:色氨酸荧光测量用于表征底物前体存在下线粒体加工肽酶(MPP)α亚基的高度保守的富含甘氨酸的环(GRL)的局部动力学。将报告色氨酸残基引入酵母α-MPP(Y299W)或近端部位(Y303W)的GRL中。时间分辨和稳态荧光光谱表明,对于Trp299,与酵母苹果酸脱氢酶前体的主要接触引起了局部GRL迁移率的变化。此外,时间分辨的测量结果表明,在环中具有单残基缺失的无功能α-MPP(Y303W / DeltaG292)有缺陷,特别是在与底物的初次接触中。因此,证明了GRL是特异性识别底物的酶的接触位点的一部分。关于表面暴露和GRL中疏水性补丁的存在,我们提出了Tom20线粒体导入受体的疏水性结合沟与α-MPP的GRL之间的先序列识别之间的功能类比。使用MPP-底物肽复合物模型的分子动力学(MD)模拟来测试该假设。基于其与Tom20结合槽相互作用的类比,选择模型拟合中底物肽的初始位置和构象。 MD模拟证实了所提出的相互作用的稳定性,并且还显示了在存在底物的情况下GRL柔性的降低,这与荧光测量结果一致。而且,在MD模拟的整个生产过程中,位于裂解位点+1和-4的保守的底物疏水残基仍与GRL的侧链保持紧密接触,作为疏水相互作用的稳定点。我们得出的结论是,MPPα亚基的GRL是MPP预先识别序列的关键进化结果,它代表与Tom20输入受体平行的功能。

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