Neurofilament Light Chain under the Lens of Structural Mass Spectrometry.

IF 3.9 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY ACS Chemical Neuroscience Pub Date : 2025-01-15 Epub Date: 2025-01-02 DOI:10.1021/acschemneuro.4c00526
Salomé Coppens, Dea Gogishvili, Valentina Faustinelli, Emanuele Scollo, Christopher Hopley, Sanne Abeln, Paul Dalby, Heidi Goenaga-Infante, Luise Luckau, Jérôme Vialaret, Sylvain Lehmann, Christophe Hirtz, Eva Illes-Toth
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Abstract

Neurofilament light chain (NfL) is an early nonspecific biomarker in neurodegenerative diseases and traumatic brain injury, indicating axonal damage. This work describes the detailed structural characterization of a selected primary calibrator with the potential to be used in future reference measurement procedure (RMP) development for the accurate quantification of NfL. As a part of the described workflow, the sequence, higher-order structure as well as solvent accessibility, and hydrogen-bonding profile were assessed under three different conditions in KPBS, artificial cerebrospinal fluid, and artificial cerebrospinal fluid in the presence of human serum albumin. The results revealed that NfL is a structurally heterogeneous protein, eliciting a large conformational flexibility. Its structural ensemble changed when it was diluted with an aqueous buffer versus a surrogate matrix, artificial cerebrospinal fluid (aCSF), and/or aCSF with human serum albumin. Various regions of protection and deprotection in the protein head, central helical, and tail domains that experienced altered solvent accessibility and conformational changes caused by different solvent conditions were identified. Moreover, interfacial residues, which may play a role in a potential direct interaction between NfL and human serum albumin, emerged from hydrogen-deuterium exchange mass spectrometry (HDX-MS). These data pinpointed distinct regions of the protein that may participate in such an interaction. Overall, critical quality attributes of a potential primary calibrator for NfL measurements are provided. These findings will ultimately inform ongoing biochemical and clinical assay development procedures and manufacturing practices, giving careful consideration during sample handling and method development.

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结构质谱透镜下的神经丝轻链。
神经丝轻链(Neurofilament light chain, NfL)是神经退行性疾病和外伤性脑损伤的早期非特异性生物标志物,提示轴突损伤。这项工作描述了一个选定的主要校准器的详细结构特征,该校准器有可能在未来的参考测量程序(RMP)开发中用于NfL的准确定量。作为所述工作流程的一部分,在KPBS、人工脑脊液和人血清白蛋白存在的人工脑脊液中,在三种不同条件下评估了序列、高阶结构、溶剂可及性和氢键谱。结果表明,NfL是一种结构异质蛋白,具有较大的构象灵活性。与替代基质、人工脑脊液(aCSF)和/或人血清白蛋白的aCSF相比,用水缓冲液稀释其结构集合发生了变化。在不同的溶剂条件下,蛋白质头部、中央螺旋和尾部的保护和去保护区域经历了溶剂可及性的改变和构象的变化。此外,氢-氘交换质谱(HDX-MS)发现了可能在NfL与人血清白蛋白之间潜在的直接相互作用中起作用的界面残基。这些数据确定了可能参与这种相互作用的蛋白质的不同区域。总的来说,提供了潜在的NfL测量主校准器的关键质量属性。这些发现最终将为正在进行的生化和临床分析开发程序和制造实践提供信息,在样品处理和方法开发过程中给予仔细考虑。
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来源期刊
ACS Chemical Neuroscience
ACS Chemical Neuroscience BIOCHEMISTRY & MOLECULAR BIOLOGY-CHEMISTRY, MEDICINAL
CiteScore
9.20
自引率
4.00%
发文量
323
审稿时长
1 months
期刊介绍: ACS Chemical Neuroscience publishes high-quality research articles and reviews that showcase chemical, quantitative biological, biophysical and bioengineering approaches to the understanding of the nervous system and to the development of new treatments for neurological disorders. Research in the journal focuses on aspects of chemical neurobiology and bio-neurochemistry such as the following: Neurotransmitters and receptors Neuropharmaceuticals and therapeutics Neural development—Plasticity, and degeneration Chemical, physical, and computational methods in neuroscience Neuronal diseases—basis, detection, and treatment Mechanism of aging, learning, memory and behavior Pain and sensory processing Neurotoxins Neuroscience-inspired bioengineering Development of methods in chemical neurobiology Neuroimaging agents and technologies Animal models for central nervous system diseases Behavioral research
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