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Complement factor C3a alters proteasome function in human RPE cells and in an animal model of age-related RPE degeneration

机译:补体因子C3a改变人RPE细胞和年龄相关RPE变性动物模型中的蛋白酶体功能

摘要

Complement activation plays an unequivocal role in the pathogenesis of age-related macular degeneration (AMD). More recent evidence suggests an additional role in AMD for the ubiquitin proteasome pathway (UPP), a protein-degradation nanomachinery present in all types of eukaryotic cells. The purpose of this study was to elaborate on these findings and investigate whether the complement system directly contributes to derangements in the UPP through the activated complement components C3a and C5a. In the retinal pigment epithelial cells (RPE) of monocyte chemoattractant protein-1-deficient CCL2(-/-) mice, a mouse model that may serve as a model for age-related atrophic degeneration of the RPE, proteasome function was investigated by immunohistochemistry of household (β5) and immuno (β5i) subunit expression. Subsequently, proteasome overall activity was determined using the BodipyFl-Ahx3L3VS probe in primary-cultured human retinal pigment epithelial cells (HRPE) cells that were exposed to different stimuli including C3a and C5a, using confocal laser scanning microscopy and flow cytometry. Gene expression and protein levels of proteasome subunits α7, PA28α, β5, and β5i were also studied in RPE cells after exposure to IFN-γ, C3a, and C5a by real-time PCR and Western blotting. Retinal pigment epithelial cells of CCL2(-/-) mice showed immunoproteasome upregulation. C3a, but not C5a supplementation, induced a decreased proteasome overall activity in HRPE cells, whereas mRNA and protein levels of household proteasome and immunoproteasome subunits were unaffected. In HRPE cells, C3a induces decreased proteasome-mediated proteolytic activity, whereas in a mouse model of age-related RPE atrophy, the immunoproteasome was upregulated, indicating a possible role for complement-driven posttranslational alterations in proteasome activity in the cascade of pathologic events that result in AMD
机译:补体激活在年龄相关性黄斑变性(AMD)的发病机理中起着明确的作用。最近的证据表明泛素蛋白酶体途径(UPP)在AMD中具有其他作用,泛素蛋白酶体途径是存在于所有类型的真核细胞中的蛋白质降解纳米机械。这项研究的目的是详细阐述这些发现,并研究补体系统是否通过激活的补体成分C3a和C5a直接导致UPP中的脱位。在单核细胞趋化蛋白-1缺陷型CCL2(-/-)小鼠的视网膜色素上皮细胞(RPE)中,通过免疫组织化学研究了可作为年龄相关性RPE萎缩性退化模型的小鼠模型(β5)和免疫(β5i)亚基的表达。随后,使用共聚焦激光扫描显微镜和流式细胞术,使用BodipyF1-Ahx3L3VS探针在暴露于不同刺激(包括C3a和C5a)的原代培养的人视网膜色素上皮细胞(HRPE)细胞中确定蛋白酶体的总体活性。还通过实时PCR和Western印迹研究了RPE细胞中IFN-γ,C3a和C5a暴露后,蛋白酶体亚基α7,PA28α,β5和β5i的基因表达和蛋白质水平。 CCL2(-/-)小鼠的视网膜色素上皮细胞显示免疫蛋白酶上调。 C3a,但不是C5a的补充,在HRPE细胞中诱导了蛋白酶体总体活性的降低,而家用蛋白酶体和免疫蛋白酶体亚基的mRNA和蛋白水平未受影响。在HRPE细胞中,C3a诱导了蛋白酶体介导的蛋白水解活性降低,而在与年龄相关的RPE萎缩的小鼠模型中,免疫蛋白酶体被上调,表明在病理事件的级联中,补体驱动的翻译后改变在蛋白酶体活性中可能发挥作用。导致AMD

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