Identification of PDXDC1 as a novel pleiotropic susceptibility locus shared between lumbar spine bone mineral density and birth weight.
Yu-Qian SongShi-Di HuXu LinXiang-He MengXiao WangYin-Hua ZhangCheng PengRui GongTao XuTong ZhangChen-Zhong LiDao-Yan PanJia-Yi YangJonathan GreenbaumJie ShenHong-Wen DengPublished in: Journal of molecular medicine (Berlin, Germany) (2022)
An increasing number of epidemiological studies have suggested that birth weight (BW) may be a determinant of bone health later in life, although the underlying genetic mechanism remains unclear. Here, we applied a pleiotropic conditional false discovery rate (cFDR) approach to the genome-wide association study (GWAS) summary statistics for lumbar spine bone mineral density (LS BMD) and BW, aiming to identify novel susceptibility variants shared between these two traits. We detected 5 novel potential pleiotropic loci which are located at or near 7 different genes (NTAN1, PDXDC1, CACNA1G, JAG1, FAT1P1, CCDC170, ESR1), among which PDXDC1 and FAT1P1 have not previously been linked to these phenotypes. To partially validate the findings, we demonstrated that the expression of PDXDC1 was dramatically reduced in ovariectomized (OVX) mice in comparison with sham-operated (SHAM) mice in both the growth plate and trabecula bone. Furthermore, immunohistochemistry assay with serial sections showed that both osteoclasts and osteoblasts express PDXDC1, supporting its potential role in bone metabolism. In conclusion, our study provides insights into some shared genetic mechanisms for BMD and BW as well as a novel potential therapeutic target for the prevention of OP in the early stages of the disease development. KEY MESSAGES : We investigated pleiotropy-informed enrichment between LS BMD and BW. We identified genetic variants related to both LS BMD and BW by utilizing a cFDR approach. PDXDC1 is a novel pleiotropic gene which may be related to both LS BMD and BW. Elevated expression of PDXDC1 is related to higher BMD and lower ratio n-6/n-3 PUFA indicating a bone protective effect of PDXDC1.
Keyphrases
- bone mineral density
- birth weight
- postmenopausal women
- genome wide
- genome wide association study
- body composition
- gestational age
- copy number
- weight gain
- poor prognosis
- healthcare
- dna methylation
- adipose tissue
- high throughput
- public health
- bone loss
- human health
- mental health
- small molecule
- high fat diet induced
- type diabetes
- gene expression
- climate change
- long non coding rna
- metabolic syndrome
- binding protein
- high resolution
- risk assessment
- health information
- transcription factor
- bioinformatics analysis
- weight loss
- genome wide analysis
- high speed