Zhang Jiajun, Chen Huanxiong, Leung Ross K K, Choy Kwong Wai, Lam Tsz-Ping, Ng Bobby K W, Qiu Yong, Feng Jian Q, Cheng Jack C Y, Lee Wayne Y W
Department of Orthopaedics and Traumatology, S. H. Ho Scoliosis Research Laboratory, The Chinese University of Hong Kong, Shatin, Hong Kong, China.
Joint Scoliosis Research Center, The Chinese University of Hong Kong and Nanjing University, The Chinese University of Hong Kong, Shatin, Hong Kong, China.
FASEB J. 2018 Jun 15:fj201800281. doi: 10.1096/fj.201800281.
Recently, noncoding RNAs have been thought to play important roles in the sporadic occurrence of spinal deformity of adolescent idiopathic scoliosis (AIS). As a prognostic factor for curve progression, low bone mass has been hypothesized to crosstalk with AIS pathogenesis. Abnormal osteoblasts activities are reported in AIS without a clear mechanism. In this study, bone biopsies from patients with AIS and control subjects and the primary osteoblasts derived from those samples were used to identify the potential microRNA (miRNA) candidates that interfere with osteoblasts and osteocytes function. Microarray analysis identified miRNA-145-5p (miR-145) as a potential upstream regulator. miR-145 and β-catenin mRNA ( CTNNB1) were overexpressed in AIS bone tissues and primary osteoblasts, and their expression correlated positively in AIS. Knockdown of miR-145 restored impaired osteocyte activity through the down-regulation of active β-catenin expression and its transcriptional activity. Significant negative correlations between circulating miR-145 and serum sclerostin, osteopontin, and osteoprotegerin were noted in patients with AIS, which was in line with our cellular findings. This is the first study to demonstrate the effect of aberrant miRNA expression and its effect on osteocyte function in AIS, which may contribute to the low bone mass. Our findings also provide insight into the development of circulating microRNAs as a bone quality biomarker or even a prognostic biomarker for AIS.-Zhang, J., Chen, H., Leung, R. K. K., Choy, K. W., Lam, T. P., Ng, B. K. W., Qiu,Y., Feng, J. Q., Cheng, J. C. Y., Lee, W. Y. W. Aberrant miR-145-5p/β-catenin signal impairs osteocyte function in adolescent idiopathic scoliosis.
最近,非编码RNA被认为在青少年特发性脊柱侧凸(AIS)脊柱畸形的散发性发生中起重要作用。作为曲线进展的一个预后因素,低骨量被假设与AIS发病机制相互作用。在AIS中报道了成骨细胞活动异常,但机制尚不清楚。在本研究中,使用来自AIS患者和对照受试者的骨活检以及从这些样本中获得的原代成骨细胞来鉴定干扰成骨细胞和骨细胞功能的潜在微小RNA(miRNA)候选物。微阵列分析确定miRNA-145-5p(miR-145)为潜在的上游调节因子。miR-145和β-连环蛋白mRNA(CTNNB1)在AIS骨组织和原代成骨细胞中过表达,并且它们在AIS中的表达呈正相关。敲低miR-145通过下调活性β-连环蛋白表达及其转录活性恢复受损的骨细胞活性。在AIS患者中,循环miR-145与血清硬化蛋白、骨桥蛋白和骨保护素之间存在显著负相关,这与我们的细胞研究结果一致。这是第一项证明异常miRNA表达及其对AIS中骨细胞功能的影响的研究,这可能导致低骨量。我们的研究结果还为循环微小RNA作为AIS的骨质量生物标志物甚至预后生物标志物的发展提供了见解。-张,J.,陈,H.,梁,R.K.K.,蔡,K.W.,林,T.P.,吴,B.K.W.,邱,Y.,冯,J.Q.,郑,J.C.Y.,李,W.Y.W.异常的miR-145-5p/β-连环蛋白信号损害青少年特发性脊柱侧凸中的骨细胞功能。