Department of Pediatrics, The Second Affiliated Hospital of Nanchang University, Nanchang, Jiangxi 330006, P.R. China.
Department of Rheumatology, The Second Affiliated Hospital of Nanchang University, Nanchang, Jiangxi 330006, P.R. China.
Int J Mol Med. 2020 Dec;46(6):1993-2006. doi: 10.3892/ijmm.2020.4737. Epub 2020 Sep 25.
Circular (circ)RNAs are an important group of non‑coding RNAs involved in different pathological and physiological functions, such as longitudinal bone growth. However, the effects of an increase or decrease in circRNA expression on idiopathic short stature (ISS) remain largely unknown. The present study compared the circRNA expression patterns of patients with ISS and healthy individuals to identify differentially expressed circRNAs involved in the regulation of ISS pathogenesis and their target microRNAs (miR). Microarray analysis revealed that 145 circRNAs were differentially expressed in patients with ISS, including 83 up‑ and 62 downregulated circRNAs. Reverse transcription‑quantitative PCR confirmed that hsa_circRNA_0079201 was increased in patients with ISS compared with that in the normal individuals, whilst hsa_circRNA_0079201 overexpression in human chondrocytes was shown to significantly suppress their proliferation, hypertrophy and endochondral ossification abilities. Luciferase reporter assays identified that circRNA_0079201 acted as an miR‑140‑3p sponge. In situ hybridization confirmed the co‑localization of circRNA_0079201 and miR‑140‑3p in the human chondrocyte and neonatal femur growth plate of C57 mice, while rescue experiments demonstrated that miR‑140‑3p overexpression reversed the inhibition of human chondrocyte proliferation, hypertrophy and endochondral ossification, caused by circRNA_0079201 overexpression. Bioinformatics analysis and luciferase reporter assays revealed that SMAD2 was a potential target gene of miR‑140‑3p. Furthermore, overexpressing circRNA_0079201 in human chondrocytes suppressed miR‑140‑3p and increased SMAD2 protein expression level. Taken together, chondrocyte proliferation, hypertrophy and endochondral ossification in ISS was suppressed by a novel regulatory axis consisting of the hsa_circRNA_0079201/miR‑140‑3p/SMAD2 pathway. The present study provided evidence that hsa_circRNA_0079201 may be a potential target for ISS therapy.
环状 RNA(circRNA)是一类参与多种病理和生理功能的重要非编码 RNA,例如纵向骨生长。然而,circRNA 表达增加或减少对特发性身材矮小(ISS)的影响在很大程度上尚不清楚。本研究比较了 ISS 患者和健康个体的 circRNA 表达模式,以鉴定参与 ISS 发病机制调节的差异表达 circRNA 及其靶 microRNA(miR)。微阵列分析显示,ISS 患者的 145 个 circRNA 表达存在差异,包括 83 个上调和 62 个下调的 circRNA。逆转录-定量 PCR 证实,与健康个体相比,ISS 患者中的 hsa_circRNA_0079201 增加,而人软骨细胞中的 hsa_circRNA_0079201 过表达显著抑制其增殖、肥大和软骨内成骨能力。荧光素酶报告基因检测鉴定出 circRNA_0079201 可作为 miR-140-3p 的海绵。原位杂交证实了 circRNA_0079201 和 miR-140-3p 在人软骨细胞和 C57 小鼠新生儿股骨生长板中的共定位,而挽救实验表明,miR-140-3p 过表达逆转了 circRNA_0079201 过表达对人软骨细胞增殖、肥大和软骨内成骨的抑制作用。生物信息学分析和荧光素酶报告基因检测显示 SMAD2 是 miR-140-3p 的潜在靶基因。此外,在人软骨细胞中过表达 circRNA_0079201 可抑制 miR-140-3p 并增加 SMAD2 蛋白表达水平。总之,由 hsa_circRNA_0079201/miR-140-3p/SMAD2 通路组成的新型调节轴抑制了 ISS 中的软骨细胞增殖、肥大和软骨内成骨。本研究提供的证据表明,hsa_circRNA_0079201 可能是 ISS 治疗的潜在靶点。