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首页> 外文期刊>FEBS Letters >NMR structures of a mitochondrial transit peptide from the green alga Chlamydomonas reinhardtii
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NMR structures of a mitochondrial transit peptide from the green alga Chlamydomonas reinhardtii

机译:来自绿色藻藻藻藻藻藻藻素的线粒体过境肽的NMR结构

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>The 26-amino-acid pre-sequence of the ATP synthase βs subunit that directs the protein from the cytosol to mitochondria in the unicellular green alga Chlamydomonas reinhardtii has been synthesised and analysed using NMR spectroscopy/circular dichroism and compared to a chloroplast transit peptide from the same organism. The results demonstrate that the peptide, though mainly unstructured in water, undergoes a strong conformational change in a 36% water/64% 2,2,2-trifluoroethanol mixture. In this solvent condition, an α-helix was characterised by NMR from residue 2 to 26. Structure calculations under NMR restraints lead to a population of models of which 60% are kinked at position 9–10. Structural analysis indicates two hydrophobic sectors on the models with a discontinuity at the 9–10 kink level. The structures suggest a different interaction mode with the mitochondrial membrane compared to the chloroplast transit peptide.
机译:ATP合酶βS亚基的26-氨基酸预序列,将蛋白质从细胞溶溶胶到U单细胞绿色藻类中的线粒体引导,并使用NMR光谱法合成和分析并分析和分析圆形二色性,与来自同一生物的叶绿体过境肽相比。结果表明,肽,但主要是在水中的非结构化,经历了36%水/ 64%2,2,2,2-三氟乙醇混合物中的强大构象变化。在该溶剂条件下,α-螺旋的特征在于残留物2至26.在NMR约束下的结构计算导致群体的群体,其中60%在9-10位扭结。结构分析表明模型上的两个疏水性扇区,在9-10个扭结水平处具有不连续性。与叶绿体过渡肽相比,该结构表明具有线粒体膜的不同相互作用模式。

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