Targeted next-generation sequencing reveals multiple deleterious variants in OPLL-associated genes

靶向新一代测序揭示了 OPLL 相关基因中的多种有害变异

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作者:Xin Chen, Jun Guo, Tao Cai, Fengshan Zhang, Shengfa Pan, Li Zhang, Shaobo Wang, Feifei Zhou, Yinze Diao, Yanbin Zhao, Zhen Chen, Xiaoguang Liu, Zhongqiang Chen, Zhongjun Liu, Yu Sun, Jie Du

Abstract

Ossification of the posterior longitudinal ligament of the spine (OPLL), which is characterized by ectopic bone formation in the spinal ligaments, can cause spinal-cord compression. To date, at least 11 susceptibility genes have been genetically linked to OPLL. In order to identify potential deleterious alleles in these OPLL-associated genes, we designed a capture array encompassing all coding regions of the target genes for next-generation sequencing (NGS) in a cohort of 55 unrelated patients with OPLL. By bioinformatics analyses, we successfully identified three novel and five extremely rare variants (MAF < 0.005). These variants were predicted to be deleterious by commonly used various algorithms, thereby resulting in missense mutations in four OPLL-associated genes (i.e., COL6A1, COL11A2, FGFR1, and BMP2). Furthermore, potential effects of the patient with p.Q89E of BMP2 were confirmed by a markedly increased BMP2 level in peripheral blood samples. Notably, seven of the variants were found to be associated with the patients with continuous subtype changes by cervical spinal radiological analyses. Taken together, our findings revealed for the first time that deleterious coding variants of the four OPLL-associated genes are potentially pathogenic in the patients with OPLL.

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