6-羟多巴胺诱导的帕金森模型斑马鱼脑肽谱

IF 1.4 4区 生物学 Q4 DEVELOPMENTAL BIOLOGY Zebrafish Pub Date : 2021-02-01 Epub Date: 2021-02-09 DOI:10.1089/zeb.2020.1945
Louise Oliveira Fiametti, Claudia Neves Correa, Leandro Mantovani de Castro
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引用次数: 6

摘要

帕金森病(PD)是一种慢性神经退行性疾病,主要是由于黑质中多巴胺能神经元的进行性丧失,导致不受控制的自主运动,引起震颤、姿势不稳定、关节僵硬、语言和运动困难等症状。先前的研究表明,特定肽参与神经退行性疾病。在此背景下,本研究利用同位素标记技术和质谱分析了6-羟多巴胺诱导斑马鱼帕金森病的肽谱变化。这些分析可以对118个多肽进行相对定量和鉴定。其中9个多肽变化显著,1个多肽升高,8个多肽降低。改变最多的序列是与脂质代谢和动态细胞骨架相关的胞质和胞外蛋白片段。这些结果为多肽在帕金森病中的功能研究开辟了新的视角。
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Peptide Profile of Zebrafish Brain in a 6-OHDA-Induced Parkinson Model.

Parkinson's disease (PD) is a chronic neurodegenerative disorder mainly attributed to the progressive loss of dopaminergic neurons in the substantia nigra, which leads to uncontrolled voluntary movements causing tremors, postural instability, joint stiffness, and speech and locomotion difficulties, among other symptoms. Previous studies have shown the participation of specific peptides in neurodegenerative diseases. In this context, the present work analyzed changes in the peptide profile in zebrafish brain induced to parkinsonian conditions with 6-hydroxydopamine, using isotopic labeling techniques plus mass spectrometry. These analyses allowed the relative quantitation and identification of 118 peptides. Of these, nine peptides showed significant changes, one peptide was increased and eight decreased. The most altered sequences were fragment of cytosolic and extracellular proteins related to lipid metabolism and dynamic cytoskeleton. These results open new perspectives of study about the function of peptides in PD.

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来源期刊
Zebrafish
Zebrafish DEVELOPMENTAL BIOLOGY-ZOOLOGY
CiteScore
3.60
自引率
5.00%
发文量
29
审稿时长
3 months
期刊介绍: Zebrafish is the only peer-reviewed journal dedicated to the central role of zebrafish and other aquarium species as models for the study of vertebrate development, evolution, toxicology, and human disease. Due to its prolific reproduction and the external development of the transparent embryo, the zebrafish is a prime model for genetic and developmental studies. While genetically more distant from humans, the vertebrate zebrafish nevertheless has comparable organs and tissues, such as heart, kidney, pancreas, bones, and cartilage. Zebrafish introduced the new section TechnoFish, which highlights these innovations for the general zebrafish community. TechnoFish features two types of articles: TechnoFish Previews: Important, generally useful technical advances or valuable transgenic lines TechnoFish Methods: Brief descriptions of new methods, reagents, or transgenic lines that will be of widespread use in the zebrafish community Zebrafish coverage includes: Comparative genomics and evolution Molecular/cellular mechanisms of cell growth Genetic analysis of embryogenesis and disease Toxicological and infectious disease models Models for neurological disorders and aging New methods, tools, and experimental approaches Zebrafish also includes research with other aquarium species such as medaka, Fugu, and Xiphophorus.
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