DNA methylation affects expression of associated genes and may contribute to the missing genetic effects from genome-wide association studies of osteoporosis. To improve insight into the mechanisms of postmenopausal osteoporosis, we combined transcript profiling with DNA methylation analyses in bone. RNA and DNA were isolated from 84 bone biopsies of postmenopausal donors varying markedly in bone mineral density (BMD). In all, 2529 CpGs in the top 100 genes most significantly associated with BMD were analyzed. The methylation levels at 63 CpGs differed significantly between healthy and osteoporotic women at 10% false discovery rate (FDR). Five of these CpGs at 5% FDR could explain 14% of BMD variation. To test whether blood DNA methylation ...
Purpose. SOST gene is one of the key factors in regulating bone absorption. Although there are repor...
[Introduction]: Cell-free DNA (cfDNA) methylation is an important molecular biomarker, which provide...
A decrease in genomic methylation commonly occurs in aging cells; however, whether this epigenetic m...
textabstractGenetic and environmental determinants of skeletal phenotypes such as bone mineral densi...
ABSTRACT Genetic and environmental determinants of skeletal phenotypes such as bone mineral density ...
Bone is a complex connective tissue characterized by a calcified extracellular matrix. This minerali...
Abstract Background Using high-dimensional penalized regression we studied genome-wide DNA-methylati...
Osteoporosis is a systemic skeletal disease which affects the ageing population and results in an in...
The loss of estrogen during menopause causes changes in the female body, with wide-ranging effects o...
Genetic and environmental determinants of skeletal phenotypes such as bone mineral density (BMD) may...
Difficulty in obtaining bone tissue is an obstacle to studying epigenetics to understand gene–enviro...
[Objective]: To determine genome-wide methylation profiles of bone from patients with hip osteoarthr...
Genetic and epigenetic factors have an important role during the development of osteoporosis. Recept...
Sclerostin (SOST), a glycoprotein predominantly secreted by bone tissue osteocytes, is an important ...
Epigenetics describes mechanisms which control gene expression and cellular processes without changi...
Purpose. SOST gene is one of the key factors in regulating bone absorption. Although there are repor...
[Introduction]: Cell-free DNA (cfDNA) methylation is an important molecular biomarker, which provide...
A decrease in genomic methylation commonly occurs in aging cells; however, whether this epigenetic m...
textabstractGenetic and environmental determinants of skeletal phenotypes such as bone mineral densi...
ABSTRACT Genetic and environmental determinants of skeletal phenotypes such as bone mineral density ...
Bone is a complex connective tissue characterized by a calcified extracellular matrix. This minerali...
Abstract Background Using high-dimensional penalized regression we studied genome-wide DNA-methylati...
Osteoporosis is a systemic skeletal disease which affects the ageing population and results in an in...
The loss of estrogen during menopause causes changes in the female body, with wide-ranging effects o...
Genetic and environmental determinants of skeletal phenotypes such as bone mineral density (BMD) may...
Difficulty in obtaining bone tissue is an obstacle to studying epigenetics to understand gene–enviro...
[Objective]: To determine genome-wide methylation profiles of bone from patients with hip osteoarthr...
Genetic and epigenetic factors have an important role during the development of osteoporosis. Recept...
Sclerostin (SOST), a glycoprotein predominantly secreted by bone tissue osteocytes, is an important ...
Epigenetics describes mechanisms which control gene expression and cellular processes without changi...
Purpose. SOST gene is one of the key factors in regulating bone absorption. Although there are repor...
[Introduction]: Cell-free DNA (cfDNA) methylation is an important molecular biomarker, which provide...
A decrease in genomic methylation commonly occurs in aging cells; however, whether this epigenetic m...