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基于结构的聚集研究揭示了α-突触核蛋白聚集过程中富含螺旋中间体的存在。

Structure based aggregation studies reveal the presence of helix-rich intermediate during α-Synuclein aggregation.

作者信息

Ghosh Dhiman, Singh Pradeep K, Sahay Shruti, Jha Narendra Nath, Jacob Reeba S, Sen Shamik, Kumar Ashutosh, Riek Roland, Maji Samir K

机构信息

Department of Biosciences and Bioengineering, IIT Bombay, Powai, Mumbai, India 400076.

Laboratory for Physical Chemistry, Wolfgang-Pauli-Str. 10, ETH Zurich, CH-8093 Zurich, Switzerland.

出版信息

Sci Rep. 2015 Mar 18;5:9228. doi: 10.1038/srep09228.

DOI:10.1038/srep09228
PMID:25784353
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4363886/
Abstract

Mechanistic understanding of nucleation dependent polymerization by α-synuclein (α-Syn) into toxic oligomers and amyloids is important for the drug development against Parkinson's disease. However the structural and morphological characterization during nucleation and subsequent fibrillation process of α-Syn is not clearly understood. Using a variety of complementary biophysical techniques monitoring entire pathway of nine different synucleins, we found that transition of unstructured conformation into β-sheet rich fibril formation involves helix-rich intermediates. These intermediates are common for all aggregating synucleins, contain high solvent-exposed hydrophobic surfaces, are cytotoxic to SHSY-5Y cells and accelerate α-Syn aggregation efficiently. A multidimensional NMR study characterizing the intermediate accompanied with site-specific fluorescence study suggests that the N-terminal and central portions mainly participate in the helix-rich intermediate formation while the C-terminus remained in an extended conformation. However, significant conformational transitions occur at the middle and at the C-terminus during helix to β-sheet transition as evident from Trp fluorescence study. Since partial helix-rich intermediates were also observed for other amyloidogenic proteins such as Aβ and IAPP, we hypothesize that this class of intermediates may be one of the important intermediates for amyloid formation pathway by many natively unstructured protein/peptides and represent a potential target for drug development against amyloid diseases.

摘要

对α-突触核蛋白(α-Syn)通过成核依赖性聚合形成有毒寡聚体和淀粉样蛋白的机制理解,对于抗帕金森病药物的开发至关重要。然而,α-Syn在成核及随后的纤维化过程中的结构和形态特征尚不清楚。通过使用多种互补的生物物理技术监测九种不同突触核蛋白的整个过程,我们发现无结构构象向富含β-折叠的纤维形成的转变涉及富含螺旋的中间体。这些中间体是所有聚集的突触核蛋白所共有的,含有高溶剂暴露的疏水表面,对SHSY-5Y细胞具有细胞毒性,并能有效加速α-Syn聚集。一项多维核磁共振研究对中间体进行了表征,并结合位点特异性荧光研究表明,N端和中央部分主要参与富含螺旋的中间体形成,而C端保持伸展构象。然而,从色氨酸荧光研究可以明显看出,在从螺旋向β-折叠转变的过程中,中间部分和C端发生了显著的构象转变。由于在其他淀粉样蛋白生成蛋白如Aβ和IAPP中也观察到了部分富含螺旋的中间体,我们推测这类中间体可能是许多天然无结构的蛋白质/肽形成淀粉样蛋白途径的重要中间体之一,并且代表了抗淀粉样疾病药物开发的潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9136/4363886/8889e3d45995/srep09228-f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9136/4363886/8889e3d45995/srep09228-f1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9136/4363886/8889e3d45995/srep09228-f1.jpg

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