微丝骨架结合蛋白在未成熟树突状细胞抗原吞噬过程中的差异表达分析
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国家自然科学基金项目(12132006,31771014,11762006,82060555)


Differential Expression Analysis of Microfilament Cytoskeleton-Binding Proteins on the Process of Antigen Phagocytosis of Immature Dendritic Cells
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    摘要:

    目的 探讨未成熟树突状细胞(immature dendritic cells, imDCs)发挥抗原吞噬功能时关键微丝骨架结合蛋白(microfilament cytoskeleton-binding proteins, MCBPs)的差异表达情况。方法 从健康人外周血中分离单核细胞(monocytes, MOs),经重组人粒-巨噬细胞集落刺激因子(Recombinant human granulocyte-macrophage colony stimulating factor, rhGM-CSF)、重组人白介素-4(Recombinant human interleukin-4, rhIL-4)诱导培养6天获得imDCs;将imDCs与低分子量(40 kDa)和高分子量(150 kDa)的右旋糖酐分别孵育1 h、3 h和6 h,流式细胞仪检测imDCs吞噬右旋糖酐的比率及免疫表型分子的表达;免疫荧光检测丝状肌动蛋白(filamentous actin,F-actin)及PFN1、WASP、α-actinin在细胞中的定位情况;qPCR和Western blotting分别检测MCBPs在mRNA和蛋白水平的表达差异;最后,基于系统生物学算法中的逐步回归和主成分分析方法筛选成分系数最大的MCBPs。结果 在吞噬抗原的过程中,imDCs对低分子量抗原的吞噬速度更快,吞噬时长可维持约3 h,其细胞表型和细胞形态逐渐向mDCs分化,且F-actin发生明显的重塑,PFN1、CDM、WASP、CAPZB、Filamin A、α-actinin等MCBPs的表达下调,WAVE1、Arp2/3 复合体、Fascin的表达上调;信号蛋白Rac1的mRNA表达上调,CDC42和RhoA的mRNA表达下调;免疫荧光结果显示,PFN1、WASP、α-actinin在imDCs吞噬抗原过程中发生转位;逐步回归和主成分分析结果显示PFN1的成分系数最大。结论 PFN1可能是imDCs吞噬抗原过程中的关键MCBPs,这对于深入理解imDCs细胞骨架结构变化与免疫学功能之间的关系具有重要意义。

    Abstract:

    Objective To explore the differential expression of the key microfilament cytoskeleton-binding proteins in immature dendritic cells (imDCs) during antigen phagocytosis. Methods Monocytes (MOs) were isolated from peripheral blood of healthy individuals and cultured with recombinant human granulocyte-macrophage colony stimulating factor (rhGM-CSF) and recombinant human interleukin-4 (rhIL-4) for 6 days to obtain imDCs. ImDCs were co-cultured with low molecular weight (40 kDa) and high molecular weight (150 kDa) dextrans for 1, 3 and 6 hours, respectively. Flow cytometry was used to detect the percentage of imDCs phagocytosing dextran and the expression of immunophenotype molecules. The localization of filamentous actin (F-actin), PFN1, WASP, and α-actinin in cells were observed by immunofluorescence imaging. The differential expression of MCBPs at the mRNA and protein levels were respectively detected by q-PCR and Western blotting. Finally, the MCBPs with the highest component coefficients were identified based on the stepwise regression and principal component analysis methods in systems biology algorithms. Results During the process of antigen phagocytosis, imDCs phagocytized low molecular weight antigens at a faster rate, with a phagocytic duration of approximately three hours. Their cell phenotypes and morphology gradually differentiated into mDCs, and F-actin remodeling was occurred significantly. The expression of MCBPs such as PFN1, CDM, WASP, CAPZB, Filamin A, α-actinin were downregulated, while the expression of WAVE1, Arp2/3 complex, and Fascin were upregulated. The mRNA expression of signaling protein Rac1 was upregulated, while the mRNA expressions of CDC42 and RhoA were downregulated. The immunofluorescence results showed that PFN1, WASP, and α-actinin were transposed during the antigen phagocytosis process of imDCs. The results of stepwise regression and principal component analysis showed that PFN1 had the highest component coefficient. Conclusions PFN1 may be a key MCBPs involved in the process of antigen phagocytosis of imDCs, which is of great significance for further understanding the relationship between changes in the cytoskeleton structure of imDCs and their immunological functions.

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李道红,罗代琴,曾宪琳,张帅,徐朴,吴翠芳,王赟,叶远浓,胡祖权,龙金华,曾柱.微丝骨架结合蛋白在未成熟树突状细胞抗原吞噬过程中的差异表达分析[J].医用生物力学,2024,39(5):814-822

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  • 收稿日期:2023-06-07
  • 最后修改日期:2024-06-02
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  • 在线发布日期: 2024-10-25
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