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首页> 外文期刊>Human Molecular Genetics >Regulation of phagolysosomal activity by miR-204 critically influences structure and function of retinal pigment epithelium/retina
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Regulation of phagolysosomal activity by miR-204 critically influences structure and function of retinal pigment epithelium/retina

机译:MIR-204对吞噬骨活性的调节至关重要的影响视网膜颜料上皮/视网膜的结构和功能

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摘要

MicroRNA-204 (miR-204) is expressed in pulmonary, renal, mammary and eye tissue, and its reduction can result in multiple diseases including cancer. We first generated miR-204(-/-) mice to study the impact of miR-204 loss on retinal and retinal pigment epithelium (RPE) structure and function. The RPE is fundamentally important for maintaining the health and integrity of the retinal photoreceptors. miR-204(-/-) eyes evidenced areas of hyper-autofluorescence and defective photoreceptor digestion, along with increased microglia migration to the RPE. Migratory Iba1(+) microglial cells were localized to the RPE apical surface where they participated in the phagocytosis of photoreceptor outer segments (POSs) and contributed to a persistent build-up of rhodopsin. These structural, molecular and cellular outcomes were accompanied by decreased light-evoked electrical responses from the retina and RPE. In parallel experiments, we suppressed miR-204 expression in primary cultures of human RPE using anti-miR-204. In vitro suppression of miR-204 in human RPE similarly showed abnormal POS clearance and altered expression of autophagy-related proteins and Rab22a, a regulator of endosome maturation. Together, these in vitro and in vivo experiments suggest that the normally high levels of miR-204 in RPE can mitigate disease onset by preventing generation of oxidative stress and inflammation originating from intracellular accumulation of undigested photoreactive POS lipids. More generally, these results implicate RPE miR-204-mediated regulation of autophagy and endolysosomal interaction as a critical determinant of normal RPE/retina structure and function.
机译:MicroRNA-204(miR-204)以肺,肾,乳腺和眼组织表示,其还原可导致多种疾病,包括癌症。首先生成miR-204( - / - )小鼠,研究MIR-204损失对视网膜和视网膜色素上皮(RPE)结构和功能的影响。 RPE对维持视网膜光感受器的健康和完整性的根本重要意义。 MiR-204( - / - )眼睛证明了超自发荧光和缺陷的光感受器消化的区域,以及对RPE的增加的微胶质细胞迁移。将迁移的IBA1(+)微胶质细胞局部定位于RPE顶端表面,其中它们参与了感光体外部段(POSS)的吞噬作用,并导致逆转杂皮蛋白的积累。这些结构,分子和细胞结果伴随着来自视网膜和RPE的光诱发电反应减少。在并行实验中,我们使用抗miR-204抑制人RPE的原代培养中的miR-204表达。人类RPE中miR-204的体外抑制同样地显示出异常的POS间隙和改变的自噬相关蛋白质和RAB22a的表达,是内体成熟的调节剂。这些体外和体内实验在一起表明,RPE的通常高水平的miR-204可以通过预防未消化的光反应性POS脂质的细胞内积累的产生来减轻疾病发作。更一般地,这些结果将RPE miR-204介导的自噬和底糖体相互作用称为正常RPE /视网膜结构和功能的关键决定因素。

著录项

  • 来源
    《Human Molecular Genetics 》 |2019年第20期| 共14页
  • 作者单位

    NEI Ophthalm Genet &

    Visual Funct Branch Sect Epithelial &

    Retinal Physiol &

    Dis NIH Bethesda;

    NEI Ophthalm Genet &

    Visual Funct Branch Sect Epithelial &

    Retinal Physiol &

    Dis NIH Bethesda;

    NEI Genet Engn Facil NIH Bethesda MD 20892 USA;

    NEI Ophthalm Genet &

    Visual Funct Branch Unit Ocular &

    Stem Cell Translat Res NIH Bethesda MD;

    NEI Ophthalm Genet &

    Visual Funct Branch Unit Ocular &

    Stem Cell Translat Res NIH Bethesda MD;

    NEI Ophthalm Genet &

    Visual Funct Branch Unit Ocular &

    Stem Cell Translat Res NIH Bethesda MD;

    NEI Ophthalm Genet &

    Visual Funct Branch Unit Ocular &

    Stem Cell Translat Res NIH Bethesda MD;

    NEI Ophthalm Genet &

    Visual Funct Branch Unit Ocular &

    Stem Cell Translat Res NIH Bethesda MD;

    NEI Ophthalm Genet &

    Visual Funct Branch Sect Epithelial &

    Retinal Physiol &

    Dis NIH Bethesda;

    NEI Sect Histopathol NIH Bethesda MD 20892 USA;

    NEI Visual Funct Core NIH Bethesda MD 20892 USA;

    NEI Visual Funct Core NIH Bethesda MD 20892 USA;

    NEI Genet Engn Facil NIH Bethesda MD 20892 USA;

    NEI Ophthalm Genet &

    Visual Funct Branch Sect Epithelial &

    Retinal Physiol &

    Dis NIH Bethesda;

    Natl Inst Environm Sci Inflammat &

    Autoimmun NIH Bethesda MD 20892 USA;

    NEI Ophthalm Genet &

    Visual Funct Branch Sect Epithelial &

    Retinal Physiol &

    Dis NIH Bethesda;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学 ;
  • 关键词

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