Zeng Qin, Wu Ke-Hao, Liu Kun, Hu Yuan, Chen Xiang-Ding, Zhang Lei, Shen Hui, Tian Qin, Zhao Lan-Juan, Deng Hong-Wen, Tan Li-Jun
Laboratory of Molecular and Statistical Genetics, College of Life Sciences, Hunan Normal University, Changsha, Hunan, China.
Center of Bioinformatics and Genomics, School of Public Health and Tropical Medicine, Tulane University, New Orleans, LA, USA.
Ann Hum Genet. 2018 Sep;82(5):244-253. doi: 10.1111/ahg.12247. Epub 2018 Apr 16.
Recent studies suggested that long noncoding RNAs (lncRNAs) were widely transcribed in the genome, but their potential roles in the genetic complexity of human disorders required further exploration. The purpose of the present study was to explore genetic polymorphisms of lncRNAs associated with bone mineral density (BMD) and its potential value. Based on the lncRNASNP database, 55,906 lncSNPs were selected to conduct a genome-wide association study meta-analysis among 11,140 individuals of seven independent studies for BMDs at femoral neck (FN), lumbar spine, and total hip (HIP). Promising results were replicated in Genetic Factors for Osteoporosis Consortium (GEFOS Sequencing, n = 32,965). We found two lncRNA loci that were significantly associated with BMD. MEF2C antisense RNA 1 (MEF2C-AS1) located at 5q14.3 was significantly associated with FN-BMD after Bonferroni correction, and the strongest association signal was detected at rs6894139 (P = 3.03 × 10 ). LOC100506136 rs6465531 located at 7q21.3 showed significant association with HIP-BMD (P = 7.43 × 10 ). MEF2C-AS1 rs6894139 was replicated in GEFOS Sequencing with P-value of 1.43 × 10 . Our results illustrated the important role of polymorphisms in lncRNAs in determining variations of BMD and provided justification and evidence for subsequent functional studies.
近期研究表明,长链非编码RNA(lncRNA)在基因组中广泛转录,但其在人类疾病遗传复杂性中的潜在作用仍需进一步探索。本研究旨在探讨与骨密度(BMD)相关的lncRNA的基因多态性及其潜在价值。基于lncRNASNP数据库,选择55906个lncSNP,对七项独立研究中11140名个体的股骨颈(FN)、腰椎和全髋(HIP)骨密度进行全基因组关联研究荟萃分析。在骨质疏松症遗传因素联盟(GEFOS测序,n = 32965)中重复了有前景的结果。我们发现两个与骨密度显著相关的lncRNA基因座。位于5q14.3的MEF2C反义RNA 1(MEF2C-AS1)在Bonferroni校正后与FN-BMD显著相关,在rs6894139处检测到最强的关联信号(P = 3.03×10 )。位于7q21.3的LOC100506136 rs6465531与HIP-BMD显著相关(P = 7.43×10 )。MEF2C-AS1 rs6894139在GEFOS测序中得到重复,P值为1.43×10 。我们的结果说明了lncRNA多态性在决定骨密度变化中的重要作用,并为后续功能研究提供了依据和证据。