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不同α-突触核蛋白菌株在突触核蛋白病中的播散变异性。

Seeding variability of different alpha synuclein strains in synucleinopathies.

机构信息

Department of Neurology, University Medicine Goettingen and the German Center for Neurodegenerative Diseases (DZNE), Göttingen, Germany.

CIBERNED (Network Center for Biomedical Research of Neurodegenerative Diseases), Institute Carlos III, Ministry of Health, Barcelona, Spain and IDIBELL (Bellvitge Biomedical Research Institute), L'Hospitale de Llobregat, Spain.

出版信息

Ann Neurol. 2019 May;85(5):691-703. doi: 10.1002/ana.25446. Epub 2019 Mar 27.

Abstract

OBJECTIVES

Currently, the exact reasons why different α-synucleinopathies exhibit variable pathologies and phenotypes are still unknown. A potential explanation may be the existence of distinctive α-synuclein conformers or strains. Here, we intend to analyze the seeding activity of dementia with Lewy bodies (DLB) and Parkinson's disease (PD) brain-derived α-synuclein seeds by real-time quaking-induced conversion (RT-QuIC) and to investigate the structure and morphology of the α-synuclein aggregates generated by RT-QuIC.

METHODS

A misfolded α-synuclein-enriched brain fraction from frontal cortex and substantia nigra pars compacta tissue, isolated by several filtration and centrifugation steps, was subjected to α-synuclein/RT-QuIC analysis. Our study included neuropathologically well-characterized cases with DLB, PD, and controls (Ctrl). Biochemical and morphological analyses of RT-QuIC products were conducted by western blot, dot blot analysis, Raman spectroscopy, atomic force microscopy, and transmission electron microscopy.

RESULTS

Independently from the brain region, we observed different seeding kinetics of α-synuclein in the RT-QuIC in patients with DLB compared to PD and Ctrl. Biochemical characterization of the RT-QuIC product indicated the generation of a proteinase K-resistant and fibrillary α-synuclein species in DLB-seeded reactions, whereas PD and control seeds failed in the conversion of wild-type α-synuclein substrate.

INTERPRETATION

Structural variances of α-synuclein seeding kinetics and products in DLB and PD indicated, for the first time, the existence of different α-synuclein strains in these groups. Therefore, our study contributes to a better understanding of the clinical heterogeneity among α-synucleinopathies, offers an opportunity for a specific diagnosis, and opens new avenues for the future development of strain-specific therapies. Ann Neurol 2019;85:691-703.

摘要

目的

目前,不同的α-突触核蛋白病表现出不同的病理学和表型的确切原因仍不清楚。一个潜在的解释可能是存在独特的α-突触核蛋白构象或菌株。在这里,我们打算通过实时震颤诱导转换(RT-QuIC)分析路易体痴呆(DLB)和帕金森病(PD)脑源性α-突触核蛋白种子的接种活性,并研究由 RT-QuIC 产生的α-突触核蛋白聚集体的结构和形态。

方法

通过几次过滤和离心步骤,从额皮质和黑质致密部组织中分离出富含错误折叠α-突触核蛋白的脑部分,然后进行α-突触核蛋白/RT-QuIC 分析。我们的研究包括神经病理学特征明确的 DLB、PD 和对照组(Ctrl)病例。通过 Western blot、点印迹分析、喇曼光谱、原子力显微镜和透射电子显微镜对 RT-QuIC 产物进行生化和形态分析。

结果

独立于脑区,我们观察到来自 DLB 患者的 RT-QuIC 中α-突触核蛋白的不同接种动力学与 PD 和 Ctrl 相比。RT-QuIC 产物的生化特征表明,在 DLB 接种反应中生成了一种蛋白水解酶抗性和纤维状的α-突触核蛋白,而 PD 和对照种子未能转化野生型α-突触核蛋白底物。

解释

DLB 和 PD 中α-突触核蛋白接种动力学和产物的结构差异首次表明,这些组中存在不同的α-突触核蛋白菌株。因此,我们的研究有助于更好地理解α-突触核蛋白病的临床异质性,为特定的诊断提供了机会,并为未来开发针对菌株的治疗方法开辟了新的途径。Ann Neurol 2019;85:691-703。

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