长链非编码 RNA (lncRNA)-DGCR5 已被公认为潜在的肿瘤进展调节剂,而其在先兆子痫 (PE) 发展中的表达和特定功能仍有待揭示。通过Western检测PE患者胎盘组织或HTR-8/SVneo细胞中miR-454-3p、lncRNA-DiGeorge综合征关键区基因5(DGCR5)和生长停滞和DNA损伤蛋白诱导45A(GADD45A)的表达。印迹或 qRT-PCR。双荧光素酶报告基因测定确定了 miR-454-3p 和 GADD45A 之间以及 miR-454-3p 和 lncRNA-DGCR5 之间的结合关系。分别使用细胞计数试剂盒 (CCK)-8、Annexin-V/碘化丙啶染色、伤口愈合、transwell 和管形成试验评估 HTR-8/SVneo 细胞的活力、凋亡、迁移、侵袭性和管形成。miR-454-3p 在 PE 组织中低表达,miR-454-3p 的上调增加了 HTR-8/SVneo 细胞的活力并促进了迁移、侵袭和管形成,同时抑制了细胞凋亡。然后,发现miR-454-3p直接靶向在PE组织中高表达的GADD45A。过表达 GADD45A 会降低 HTR-8/SVneo 细胞的活力并抑制其迁移、侵袭和管形成,同时增强细胞凋亡,并中和 miR-454-3p 上调的作用。反过来,miR-454-3p 上调逆转了 GADD45A 过表达的影响。同时,miR-454-3p 也可以靶向 lncRNA-DGCR5。沉默 lncRNA-DGCR5 增加了 miR-454-3p 表达和细胞活力,并促进了 HTR-8/SVneo 细胞的迁移、侵袭和管形成,同时抑制了细胞凋亡,它抵消了 miR-454-3p 下调的影响。像往常一样,miR-454-3p 下调逆转了 lncRNA-DGCR5 沉默的影响。总之,沉默lncRNA-DGCR5通过挽救由miR-454-3p引起的GADD45A表达抑制,增加了HTR-8/SVneo细胞的活力,促进了迁移、侵袭和管形成,并抑制了细胞凋亡。
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Silencing lncRNA-DGCR5 increased trophoblast cell migration, invasion and tube formation, and inhibited cell apoptosis via targeting miR-454-3p/GADD45A axis
Long noncoding RNA (lncRNA)-DGCR5 has been recognized as a potential tumor progression regulator, while its expression and specific functions in preeclampsia (PE) development remain unveiled. The expressions of miR-454-3p, lncRNA-DiGeorge syndrome critical region gene 5 (DGCR5) and growth arrest and DNA damage protein-inducible 45A (GADD45A) in placental tissues from PE patients or HTR-8/SVneo cells were assessed by Western blot or qRT-PCR. Dual-luciferase reporter assay determined the binding relations between miR-454-3p and GADD45A and between miR-454-3p and lncRNA-DGCR5. The viability, apoptosis, migration, invasiveness and tube formation of HTR-8/SVneo cell were evaluated using cell counting kit (CCK)-8, Annexin-V/Propidium iodide staining, wound healing, transwell and tube formation assays, respectively. miR-454-3p was low-expressed in PE tissue, and upregulation of miR-454-3p increased viability and promoted migration, invasion and tube formation in HTR-8/SVneo cells while inhibiting apoptosis. Then, miR-454-3p was found to directly target GADD45A which was high-expressed in PE tissues. Overexpressing GADD45A decreased the viability and inhibited the migration, invasion and tube formation of HTR-8/SVneo cells while enhancing apoptosis, and it neutralized the effect of miR-454-3p upregulation. In turn, miR-454-3p upregulation reversed the effect of GADD45A overexpression. Meanwhile, miR-454-3p could also target lncRNA-DGCR5. Silencing lncRNA-DGCR5 increased miR-454-3p expression and cell viability and promoted migration, invasion and tube formation in HTR-8/SVneo cells while inhibiting apoptosis, and it counteracted the effect of miR-454-3p downregulation. As usual, miR-454-3p downregulation reversed the effect of lncRNA-DGCR5 silencing. To conclude, silencing lncRNA-DGCR5 increased viability, promoted migration, invasion and tube formation, and inhibited apoptosis in HTR-8/SVneo cells by rescuing the inhibition of GADD45A expression caused by miR-454-3p.
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