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MicroRNA-762 Is Upregulated in Human Corneal Epithelial Cells in Response to Tear Fluid and Pseudomonas aeruginosa Antigens and Negatively Regulates the Expression of Host Defense Genes Encoding RNase7 and ST2

机译:MicroRNA-762在人类角膜上皮细胞中响应泪液和铜绿假单胞菌抗原而上调,并负调控编码RNase7和ST2的宿主防御基因的表达。

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摘要

Mucosal surfaces regulate defenses against infection and excessive inflammation. We previously showed that human tears upregulated epithelial expression of genes encoding RNase7 and ST2, which inhibited Pseudomonas aeruginosa invasion of human corneal epithelial cells. Here, microRNA microarrays were used to show that a combination of tear fluid exposure (16 h) then P. aeruginosa antigens (3 h) upregulated miR-762 and miR-1207, and down-regulated miR-92 and let-7b (all > 2-fold) in human corneal epithelial cells compared to P. aeruginosa antigens alone. RT-PCR confirmed miR-762 upregulation ∼ 3-fold in tear-antigen exposed cells. Without tears or antigens, an antagomir reduced miR-762 expression relative to scrambled controls by ∼50%, increased expression of genes encoding RNase7 (∼80 %), ST2 (∼58%) and Rab5a (∼75%), without affecting P. aeruginosa internalization. However, P. aeruginosa invasion was increased > 3-fold by a miR-762 mimic which reduced RNase7 and ST2 gene expression. Tear fluid alone also induced miR-762 expression ∼ 4-fold, which was reduced by the miR-762 antagomir. Combination of tear fluid and miR-762 antagomir increased RNase7 and ST2 gene expression. These data show that mucosal fluids, such as tears, can modulate epithelial microRNA expression to regulate innate defense genes, and that miR-762 negatively regulates RNase7, ST2 and Rab5a genes. Since RNase7 and ST2 inhibit P. aeruginosa internalization, and are upregulated by tear fluid, other tear-induced mechanisms must counteract inhibitory effects of miR-762 to regulate resistance to bacteria. These data also suggest a complex relationship between tear induction of miR-762, its modulation of innate defense genes, and P. aeruginosa internalization.
机译:粘膜表面调节防御感染和过度炎症的能力。我们先前显示,人的眼泪上调了编码RNase7和ST2的基因的上皮表达,从而抑制了铜绿假单胞菌入侵人角膜上皮细胞。在这里,microRNA微阵列用于显示泪液暴露(16小时)和铜绿假单胞菌抗原(3小时)的组合上调了miR-762和miR-1207,并下调了miR-92和let-7b(所有与单独的铜绿假单胞菌抗原相比,在人类角膜上皮细胞中的≥2倍)。 RT-PCR证实暴露于泪液抗原的细胞中miR-762上调约3倍。没有泪液或抗原,antagomir相对于混乱的对照,miR-762的表达降低了约50%,编码RNase7(约80%),ST2(约58%)和Rab5a(约75%)的基因表达增加,而没有影响P铜绿内在化。但是,miR-762模拟物减少了RNase7和ST2基因的表达,使铜绿假单胞菌的侵袭增加了> 3倍。单独的泪液也诱导miR-762表达约4倍,而miR-762 antagomir降低了表达。泪液和miR-762 antagomir的组合增加了RNase7和ST2基因的表达。这些数据表明,粘膜液(例如眼泪)可以调节上皮microRNA的表达以调节先天防御基因,而miR-762则负调节RNase7,ST2和Rab5a基因。由于RNase7和ST2抑制了铜绿假单胞菌的内在化,并被泪液上调,因此其他由泪液诱导的机制必须抵消miR-762的抑制作用以调节对细菌的抵抗力。这些数据还暗示了miR-762的泪液诱导,其先天防御基因的调节与铜绿假单胞菌内化之间的复杂关系。

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