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Unfolding process of a single peptide molecule on a substrate was investigated by atomic force microscope

机译:通过原子力显微镜研究了单个肽分子在底物上的展开过程

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The unfolding process of a peptide on a gold substrate on the scale of a single molecule was investigated by measuring force curves using an atomic force microscope (AFM). The sequence of the synthesized peptide was AAKA (AEAAKA)_5A-cysteine that formed an alpha-helix in a buffer. A single peptide molecule was stretched between the AFM tip and the substrate during the force curve measurement. In the force curves, many abrupt changes or jumps in cantilever deflection were observed during the peptide stretching. It seems likely that these discontinuities were due to the breaking of some hydrogen bonds of an alpha-helix as helical parts of the peptide were elongated to a stretched form. The distribution of lengths of the peptide elongation, as calculated from the discontinuity spacing, had two peaks around 8―11 and 18―21 A. This suggests that 1.5 or 3 turns of the helical parts of the peptide were ruptured simultaneously.
机译:通过使用原子力显微镜(AFM)测量力曲线,研究了肽在金底物上按单个分子的展开过程。合成的肽的序列是在缓冲液中形成α-螺旋的AAKA(AEAAKA)_5A-半胱氨酸。在力曲线测量期间,单个肽分子在AFM尖端和底物之间拉伸。在力曲线中,在肽拉伸过程中观察到许多突然的变化或悬臂偏转的跳跃。这些不连续性似乎是由于当肽的螺旋部分被拉长成拉伸形式时,α-螺旋的一些氢键断裂所致。由不连续间隔计算得出的肽伸长长度的分布在8-11和18-21 A附近有两个峰。这表明1.5或3匝肽的螺旋部分同时断裂。

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