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缺氧条件下人牙周膜细胞的蛋白质组学分析

Proteomic analysis of human periodontal ligament cells under hypoxia.

作者信息

Li Qiwen, Luo Tao, Lu Wenxin, Yi Xiaoxiao, Zhao Zhihe, Liu Jun

机构信息

1State Key Laboratory of Oral Diseases & National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, No.14, 3rd Section, South Renmin Road, Chengdu, 610041 China.

2Sichuan Cancer Hospital & Institute, Sichuan Cancer Center, School of Medicine, University of Electronic Science and Technology of China, Chengdu, China.

出版信息

Proteome Sci. 2019 Aug 31;17:3. doi: 10.1186/s12953-019-0151-2. eCollection 2019.

Abstract

BACKGROUND

The periodontal ligament is essential for homeostasis of periodontal tissue. A hypoxic milieu of the periodontal tissue is generated under periodontitis or during orthodontic treatment, which affects the periodontal and bone remodelling process. Here, we provide a comprehensive proteomic characterization of periodontal ligament cells under hypoxic conditions, aiming to reveal previously unappreciated biological changes and to help advance hypoxia-based therapeutic strategies for periodontal diseases.

METHODS

Human periodontal ligament cells (hPDLCs) were characterized using immunohistochemistry (IHC) and flow cytometry (FACS). Successful hypoxia treatment of hPDLCs with 1% O was confirmed by qRT-PCR. Proliferation was evaluated using an MTT assay. The proteomic expression profile under hypoxia was studied with the isobaric tags for relative and absolute quantification (iTRAQ) approach followed by protein identification and bioinformatic analysis, and western blot verification was performed.

RESULTS

The hPDLCs were positive for vimentin, CD73 and CD105 and negative for keratin, CD34 and CD45. After hypoxia treatment, the mRNA expression of hypoxia-inducible factor 1a ( was upregulated. The proliferation rate was elevated during the first 6 h but decreased from 6 h to 72 h. A total of 220 differentially expressed proteins were quantified in hPDLCs under hypoxia (1% O, 24 h), including 153 upregulated and 67 downregulated proteins, five of which were verified by western blot analysis. The Gene Ontology enriched terms included the energy metabolic process, membrane-bound organelle and vesicle, and protein binding terms. Kyoto Encyclopedia of Genes and Genomes (KEGG) analysis indicated several involved pathways, including glycolysis/gluconeogenesis, biosynthesis of amino acids, the HIF-1 signalling pathway, and focal adhesion. A protein-protein interaction (PPI) network demonstrated the dominant role of autophagy over apoptosis under hypoxia.

CONCLUSION

The proteomic profile of hPDLCs under hypoxia was mainly related to energy metabolism, autophagy, and responses to stimuli such as adhesion and inflammation. Previously unrecognized proteins including solute carrier family proteins, heat shock proteins, ubiquitination-related enzymes, collagen and S100 family proteins are involved in adaptive response to hypoxia in hPDLCs and are thus of great research interest in future work.

摘要

背景

牙周韧带对于牙周组织的稳态至关重要。在牙周炎或正畸治疗期间,牙周组织会产生缺氧环境,这会影响牙周和骨重塑过程。在此,我们提供了缺氧条件下牙周韧带细胞的全面蛋白质组学特征,旨在揭示先前未被认识的生物学变化,并有助于推进基于缺氧的牙周疾病治疗策略。

方法

使用免疫组织化学(IHC)和流式细胞术(FACS)对人牙周韧带细胞(hPDLCs)进行表征。通过qRT-PCR确认用1% O₂成功对hPDLCs进行缺氧处理。使用MTT法评估增殖情况。采用相对和绝对定量等压标签(iTRAQ)方法研究缺氧条件下的蛋白质组表达谱,随后进行蛋白质鉴定和生物信息学分析,并进行蛋白质印迹验证。

结果

hPDLCs波形蛋白、CD73和CD105呈阳性,角蛋白、CD34和CD45呈阴性。缺氧处理后,缺氧诱导因子1α(HIF-1α)的mRNA表达上调。在前6小时增殖率升高,但从6小时到72小时下降。在缺氧(1% O₂,24小时)条件下,共定量了hPDLCs中220种差异表达蛋白,包括153种上调蛋白和67种下调蛋白,其中5种通过蛋白质印迹分析得到验证。基因本体富集术语包括能量代谢过程、膜结合细胞器和囊泡以及蛋白质结合术语。京都基因与基因组百科全书(KEGG)分析表明有几条涉及的途径,包括糖酵解/糖异生、氨基酸生物合成、HIF-1信号通路和粘着斑。蛋白质-蛋白质相互作用(PPI)网络表明在缺氧条件下自噬比凋亡起主导作用。

结论

缺氧条件下hPDLCs的蛋白质组谱主要与能量代谢、自噬以及对诸如粘着和炎症等刺激的反应有关。包括溶质载体家族蛋白、热休克蛋白、泛素化相关酶、胶原蛋白和S100家族蛋白在内的先前未被认识的蛋白质参与了hPDLCs对缺氧的适应性反应,因此在未来工作中具有很大的研究兴趣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a440/6717648/1eeb237ca821/12953_2019_151_Fig1_HTML.jpg

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