Genetics and Genomics of SOST: Functional Analysis of Variants and Genomic Regulation in Osteoblasts.
Núria Martínez-GilNeus Roca-AyatsMónica CozarNatalia García-GiraltDiana OvejeroXavier NoguésDaniel GrinbergSusanna BalcellsPublished in: International journal of molecular sciences (2021)
SOST encodes the sclerostin protein, which acts as a key extracellular inhibitor of the canonical Wnt pathway in bone, playing a crucial role in skeletal development and bone homeostasis. The objective of this work was to assess the functionality of two variants previously identified (the rare variant rs570754792 and the missense variant p.Val10Ile) and to investigate the physical interactors of the SOST proximal promoter region in bone cells. Through a promoter luciferase reporter assay we show that the minor allele of rs570754792, a variant located in the extended TATA box motif, displays a significant decrease in promoter activity. Likewise, through western blot studies of extracellular and intracellular sclerostin, we observe a reduced expression of the p.Val10Ile mutant protein. Finally, using a circular chromosome conformation capture assay (4C-seq) in 3 bone cell types (MSC, hFOB, Saos-2), we have detected physical interactions between the SOST proximal promoter and the ECR5 enhancer, several additional enhancers located between EVT4 and MEOX1 and a distant region containing exon 18 of DHX8. In conclusion, SOST presents functional regulatory and missense variants that affect its expression and displays physical contacts with far reaching genomic sequences, which may play a role in its regulation within bone cells.
Keyphrases
- transcription factor
- copy number
- bone mineral density
- dna methylation
- binding protein
- soft tissue
- induced apoptosis
- bone loss
- gene expression
- single cell
- physical activity
- poor prognosis
- bone regeneration
- mental health
- postmenopausal women
- high throughput
- stem cells
- south africa
- cell cycle arrest
- crispr cas
- genome wide
- cell proliferation
- cell therapy
- lymph node
- reactive oxygen species
- rna seq
- oxidative stress
- mesenchymal stem cells
- molecular dynamics simulations
- autism spectrum disorder