Suppr超能文献

这些构象特异性的α-突触核蛋白抗体的特异性如何?使用具有不同结构和形态的α-突触核蛋白单体、纤维和寡聚体的经过充分表征的制剂,对 16 种α-突触核蛋白构象特异性抗体进行了表征和验证。

How specific are the conformation-specific α-synuclein antibodies? Characterization and validation of 16 α-synuclein conformation-specific antibodies using well-characterized preparations of α-synuclein monomers, fibrils and oligomers with distinct structures and morphology.

机构信息

Laboratory of Molecular and Chemical Biology of Neurodegeneration, Brain Mind Institute, EPFL, Switzerland.

ADx NeuroSciences, Technologiepark 94, Ghent, Belgium.

出版信息

Neurobiol Dis. 2020 Dec;146:105086. doi: 10.1016/j.nbd.2020.105086. Epub 2020 Sep 22.

Abstract

Increasing evidence suggests that alpha-synuclein (α-syn) oligomers are obligate intermediates in the pathway involved in α-syn fibrillization and Lewy body (LB) formation, and may also accumulate within LBs in Parkinson's disease (PD) and other synucleinopathies. Therefore, the development of tools and methods to detect and quantify α-syn oligomers has become increasingly crucial for mechanistic studies to understand their role in PD, and to develop new diagnostic methods and therapies for PD and other synucleinopathies. The majority of these tools and methods rely primarily on the use of aggregation state-specific or conformation-specific antibodies. Given the impact of the data and knowledge generated using these antibodies on shaping the foundation and directions of α-syn and PD research, it is crucial that these antibodies are thoroughly characterized, and their specificity or ability to capture diverse α-syn species is tested and validated. Herein, we describe an antibody characterization and validation pipeline that allows a systematic investigation of the specificity of α-syn antibodies using well-defined and well-characterized preparations of various α-syn species, including monomers, fibrils, and different oligomer preparations that are characterized by distinct morphological, chemical and secondary structure properties. This pipeline was used to characterize 18 α-syn antibodies, 16 of which have been reported as conformation- or oligomer-specific antibodies, using an array of techniques, including immunoblot analysis (slot blot and Western blot), a digital ELISA assay using single molecule array technology and surface plasmon resonance. Our results show that i) none of the antibodies tested are specific for one particular type of α-syn species, including monomers, oligomers or fibrils; ii) all antibodies that were reported to be oligomer-specific also recognized fibrillar α-syn; and iii) a few antibodies showed high specificity for oligomers and fibrils but did not bind to monomers. These findings suggest that the great majority of α-syn aggregate-specific antibodies do not differentiate between oligomers and fibrils, thus highlighting the importance of exercising caution when interpreting results obtained using these antibodies. Our results also underscore the critical importance of the characterization and validation of antibodies before their use in mechanistic studies and as diagnostic tools or therapeutic agents. This will not only improve the quality and reproducibility of research and reduce costs but will also reduce the number of therapeutic antibody failures in the clinic.

摘要

越来越多的证据表明,α-突触核蛋白(α-syn)寡聚体是 α-syn 纤维形成和路易体(LB)形成过程中必需的中间产物,并且在帕金森病(PD)和其他突触核蛋白病中的 LB 内也可能积累。因此,开发用于检测和定量α-syn 寡聚体的工具和方法对于理解其在 PD 中的作用以及开发用于 PD 和其他突触核蛋白病的新诊断方法和疗法变得越来越重要。这些工具和方法中的大多数主要依赖于使用聚集状态特异性或构象特异性抗体。鉴于使用这些抗体产生的数据和知识对塑造 α-syn 和 PD 研究的基础和方向产生的影响,彻底表征这些抗体并测试和验证其特异性或捕获多种 α-syn 物种的能力至关重要。在此,我们描述了一种抗体表征和验证管道,该管道允许使用各种经过充分定义和充分表征的 α-syn 物种制剂(包括单体、纤维和具有不同形态、化学和二级结构特性的不同寡聚体制剂)对 α-syn 抗体的特异性进行系统研究。该管道用于使用一系列技术(包括免疫印迹分析(斑点印迹和 Western blot)、使用单分子阵列技术的数字 ELISA 测定和表面等离子体共振)对 18 种 α-syn 抗体进行表征,其中 16 种被报道为构象或寡聚体特异性抗体。我们的结果表明:i) 测试的抗体均不能特异性识别一种特定类型的 α-syn 物种,包括单体、寡聚体或纤维;ii) 被报道为寡聚体特异性的所有抗体也识别纤维状的 α-syn;iii) 少数抗体对寡聚体和纤维具有高特异性,但不与单体结合。这些发现表明,绝大多数 α-syn 聚集特异性抗体不能区分寡聚体和纤维,因此在使用这些抗体时解释结果时应谨慎。我们的结果还强调了在将抗体用于机制研究以及作为诊断工具或治疗剂之前对其进行表征和验证的重要性。这不仅将提高研究的质量和可重复性并降低成本,还将减少临床上治疗性抗体失败的数量。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验