Proteomics Identification of Potential Candidates Involved in Cell Proliferation for Early Stage of Brain Regeneration in the Adult Zebrafish.

IF 1.2 4区 生物学 Q4 DEVELOPMENTAL BIOLOGY Zebrafish Pub Date : 2017-02-01 DOI:10.1089/zeb.2016.1319
Fei Tieng Lim, S. Ogawa, A. I. Smith, I. Parhar
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引用次数: 11

Abstract

The central nervous system (CNS) of the non-mammalian vertebrates has better neuroregenerative capability as compared with the mammalian CNS. Regeneration of habenula was observed 40 days after damage in zebrafish. During the early stage of regeneration, we found a significant increase of apoptotic cells on day-1 post-damage and of proliferative cells on day-3 post-damage. To identify the molecular factor(s) involved in the early stages of neuroregeneration, differentially expressed proteins during sham, 20- and 40-h post-habenula damage were investigated by proteomic approach by using two-dimensional differential gel electrophoresis (2D-DIGE) coupled with Matrix-Assisted Laser Desorption/Ionization-Time-of-Flight (MALDI-ToF) and tandem mass spectrometry. Protein profiles revealed 17 differentially (>1.5-fold) expressed proteins: 10 upregulated, 4 downregulated, 2 proteins were found to be downregulated at the early stage but upregulated at a later stage, and 1 protein was found to be upregulated at 2 different time points. All proteins identified can be summarized under few molecular processes involved in the early stages of neuroregeneration in zebrafish CNS: apoptosis regulation (Wnt inhibitory factor 1 [WIF1]), neuroprotection (metallothionein), cell proliferation (Spred2, ependymin, Lhx1, and Wnts), differentiation (Spred2, Lhx9, and Wnts), and morphogenesis (cytoplasmic actins and draculin). These protein profiling results suggest that drastic molecular changes occur in the neuroregenerative process during this period, which includes cell proliferation, differentiation, and protection.
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成年斑马鱼早期脑再生细胞增殖的蛋白质组学鉴定。
与哺乳动物中枢神经系统相比,非哺乳动物中枢神经系统具有更好的神经再生能力。斑马鱼损伤后40天观察缰带再生。在再生早期,我们发现损伤后第1天凋亡细胞显著增加,损伤后第3天增殖细胞显著增加。为了确定参与神经再生早期阶段的分子因子,采用蛋白质组学方法,利用二维差分凝胶电泳(2D-DIGE)结合基质辅助激光解吸/电离飞行时间(MALDI-ToF)和质谱法,研究了假手术、20和40小时后habenula损伤期间的差异表达蛋白。蛋白谱显示17个差异表达蛋白(>1.5倍):10个蛋白上调,4个蛋白下调,2个蛋白在早期下调,但在后期上调,1个蛋白在2个不同的时间点上调。所有鉴定的蛋白都可以归纳为斑马鱼中枢神经系统神经再生早期的几个分子过程:凋亡调节(Wnt抑制因子1 [WIF1])、神经保护(金属硫蛋白)、细胞增殖(Spred2、室管ymin、Lhx1和Wnts)、分化(Spred2、Lhx9和Wnts)和形态发生(细胞质肌动素和德古拉素)。这些蛋白质谱分析结果表明,在这一时期,神经再生过程中发生了剧烈的分子变化,包括细胞增殖、分化和保护。
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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.
期刊最新文献
Fish in a Dish: Using Zebrafish in Authentic Science Research Experiences for Under-represented High School Students from West Virginia. Novel Development of Magnetic Resonance Imaging to Quantify the Structural Anatomic Growth of Diverse Organs in Adult and Mutant Zebrafish. Zebrafish (Danio rerio) Gynogenetic Production by Heat Shock: Comparison Between Mitotic and Meiotic Treatment. Curcumin-Encapsulated Nanomicelles Promote Tissue Regeneration in Zebrafish Eleutheroembryo. Incorporating Primer Amplification Efficiencies in Quantitative Reverse Transcription Polymerase Chain Reaction Experiments; Considerations for Differential Gene Expression Analyses in Zebrafish.
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