Long noncoding RNA KCNQ1OT1 inhibits osteoclast differentiation by regulating the miR-128-3p/NFAT5 axis

Hengshuo Zhang, Lu Chen, Ziyu Wang, Zhen Sun, Yu Shan, Qinghui Li, Linzeng Qi, Hongliang Wang, Yunzhen Chen
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引用次数: 4

Abstract

Noncoding RNAs play an important role in regulating osteoclast differentiation. We investigated whether and how potassium voltage-gated channel subfamily Q member 1 overlapping transcript 1 (KCNQ1OT1), a long noncoding RNA, regulates osteoclast differentiation. We found that the expression of KCNQ1OT1 was downregulated in osteoporotic bone tissue. Then transfection of KCNQ1OT1 overexpression vectors or small interfering RNAs showed that the proliferation, migration, and osteoclast differentiation of RAW 264.7 cells were inhibited by KCNQ1OT1 upregulation, while they were promoted by KCNQ1OT1 knockdown. Interestingly, we found and confirmed that miR-128-3p was a target of KCNQ1OT1 using online databases, dual luciferase reporter assays and quantitative real-time polymerase chain reaction, and that it inhibited the expression of miR-128-3p. Moreover, we confirmed that miR-128-3p directly targeted nuclear factor of activated T cell 5 (NFAT5), a protein that combines with osteoprotegerin and thus regulates osteoclastogenesis with the presence of the receptor activator of nuclear factor κB ligand. Furthermore, we demonstrated that both the knockdown of KCNQ1OT1 and the overexpression of miR-128-3p attenuate the expression of NFAT5, while upregulating the osteoclastogenesis markers c-Fos, NFATc1, and Ctsk. The results from overexpression of KCNQ1OT1 and the inhibition of miR-128-3p were contrary to the above. Finally, we found that the inhibition of osteoclast differentiation by KCNQ1OT1 overexpression could be rescued using a miR-128-3p mimic, while the enhancement of migration and osteoclast differentiation by si-NFAT5 could be reversed with a miR-128-3p inhibitor. These results suggested that KCNQ1OT1 regulates the osteoclast differentiation via the miR-128-3p/NFAT5 axis.
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长链非编码RNA kcnq10t1通过调节miR-128-3p/NFAT5轴抑制破骨细胞分化
非编码rna在调节破骨细胞分化中发挥重要作用。我们研究了钾电压门控通道亚家族Q成员1重叠转录本1 (kcnq10t1),一种长链非编码RNA,是否以及如何调节破骨细胞分化。我们发现kcnq10t1在骨质疏松骨组织中表达下调。转染KCNQ1OT1过表达载体或小干扰rna后发现,KCNQ1OT1上调可抑制RAW 264.7细胞的增殖、迁移和破骨细胞分化,而KCNQ1OT1下调可促进细胞增殖、迁移和破骨细胞分化。有趣的是,我们通过在线数据库、双荧光素酶报告基因检测和实时定量聚合酶链反应发现并证实了miR-128-3p是kcnq10t1的靶标,并且抑制了miR-128-3p的表达。此外,我们证实miR-128-3p直接靶向活化T细胞5核因子(NFAT5),这是一种与骨保护素结合的蛋白,在核因子κB配体受体激活剂的存在下调节破骨细胞的发生。此外,我们证明了kcnq10t1的敲低和miR-128-3p的过表达都减弱了NFAT5的表达,同时上调了破骨细胞生成标志物c-Fos、NFATc1和Ctsk。kcnq10t1过表达和miR-128-3p抑制的结果与上述相反。最后,我们发现kcnq10t1过表达对破骨细胞分化的抑制可以通过miR-128-3p模拟物恢复,而si-NFAT5对迁移和破骨细胞分化的增强可以通过miR-128-3p抑制剂逆转。这些结果表明kcnq10t1通过miR-128-3p/NFAT5轴调控破骨细胞分化。
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