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Aβ(25 - 35)肽的位点特异性结构:同位素辅助振动圆二色性研究

Site-specific structure of Aβ(25-35) peptide: isotope-assisted vibrational circular dichroism study.

作者信息

Shanmugam Ganesh, Polavarapu Prasad L

机构信息

Department of Chemistry, Vanderbilt University, Nashville, TN 37235, USA.

出版信息

Biochim Biophys Acta. 2013 Jan;1834(1):308-16. doi: 10.1016/j.bbapap.2012.08.010. Epub 2012 Aug 15.

Abstract

We investigated the site-specific local structure of an amyloid peptide, NH(2)-GSNKGAIIGLM-COOH [Aβ(25-35)], one of the active fragments of amyloid β peptide that is known to be responsible for Alzheimer's disease, in the fibrillar aggregated state. Isotope-assisted infrared vibrational circular dichroism (VCD) and absorption (VA) spectroscopy were used for the parent Aβ(25-35) peptide, along with doubly (13)C labeled peptides at the carbonyl groups of residues 29 (Gly) and 30 (Ala) [Aβ(25-35:(13)C-29/30)] and at the carbonyl groups of residues 33 (Gly) and 34 (Leu) [Aβ(25-35:(13)C-33/34)]. The present results confirm that Aβ(25-35) peptide fibrils adopt a β-sheet structure and isotopic dilution experiments suggest a parallel β-sheet structure. The isotopic shifts suggest that the microenvironment of residues 29 (Gly) and 30 (Ala) could be different from that of residues 33 (Gly) and 34 (Leu). An unusual enhancement for the amide II' VCD intensities of Aβ(25-35:(13)C-29/30) and Aβ(25-35:(13)C-33/34) peptide fibrils, considered to originate from inter-strand coupling, was found for the first time. The structural information reported in this manuscript has important implications in understanding the role of this peptide in the development of Alzheimer's disease.

摘要

我们研究了淀粉样肽NH(2)-GSNKGAIIGLM-COOH [Aβ(25-35)]在纤维状聚集状态下的位点特异性局部结构,Aβ(25-35)是已知导致阿尔茨海默病的淀粉样β肽的活性片段之一。同位素辅助红外振动圆二色性(VCD)和吸收(VA)光谱用于母本Aβ(25-35)肽,以及在残基29(甘氨酸)和30(丙氨酸)的羰基处[ Aβ(25-35:(13)C-29/30)]和在残基33(甘氨酸)和34(亮氨酸)的羰基处[ Aβ(25-35:(13)C-33/34)]进行双(13)C标记的肽。目前的结果证实Aβ(25-35)肽纤维采用β-折叠结构,同位素稀释实验表明是平行β-折叠结构。同位素位移表明残基29(甘氨酸)和30(丙氨酸)的微环境可能与残基33(甘氨酸)和34(亮氨酸)的不同。首次发现Aβ(25-35:(13)C-29/30)和Aβ(25-35:(13)C-33/34)肽纤维的酰胺II' VCD强度有异常增强,认为这源于链间耦合。本手稿中报道的结构信息对于理解该肽在阿尔茨海默病发展中的作用具有重要意义。

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