<div><p>Sclerosteosis is a rare high bone mass disease that is caused by inactivating mutations in the <i>SOST</i> gene. Its gene product, Sclerostin, is a key negative regulator of bone formation and might therefore serve as a target for the anabolic treatment of osteoporosis. The exact molecular mechanism by which Sclerostin exerts its antagonistic effects on Wnt signaling in bone forming osteoblasts remains unclear. Here we show that Wnt3a-induced transcriptional responses and induction of alkaline phosphatase activity, an early marker of osteoblast differentiation, require the Wnt co-receptors LRP5 and LRP6. Unlike Dickkopf1 (DKK1), Sclerostin does not inhibit Wnt-3a-induced phosphorylation of LRP5 at serine 1503 or LRP6 at serine 1490....
Sclerosteosis is a severe autosomal recessive sclerosing skeletal dysplasia with no available treatm...
After discovering that lack of Sost/sclerostin expression is the cause of the high bone mass human s...
Sclerostin has been identified as an important regulator of bone homeostasis through inhibition of t...
Sclerosteosis is a rare high bone mass disease that is caused by inactivating mutations in the SOST ...
The glycoprotein sclerostin has been identified as a negative regulator of bone growth. It exerts it...
The bone formation inhibitor sclerostin encoded by SOST binds in vitro to low-density lipoprotein re...
The WNT pathway has become an attractive target for skeletal therapies. High-bone-mass phenotypes in...
Sclerostin is an osteocyte-derived negative regulator of bone formation. It inhibits BMP-stimulated ...
Sclerostin is secreted from osteocytes, binds to the Wnt co-receptor Lrp5/6, and affects the interac...
Abstract. Wnt signaling is involved not only in embryonic development but also in maintenance of hom...
Low-density lipoprotein receptor-related protein 6 (LRP6) is a coreceptor of the beta -catenin-depen...
<div><p>The cystine-knot containing protein Sclerostin is an important negative regulator of bone gr...
The cystine-knot containing protein Sclerostin is an important negative regulator of bone growth and...
AbstractMechanical loading is the primary functional determinant of bone mass and architecture, and ...
Background: Sclerosteosis, a severe autosomal recessive sclerosing skeletal dysplasia characterised ...
Sclerosteosis is a severe autosomal recessive sclerosing skeletal dysplasia with no available treatm...
After discovering that lack of Sost/sclerostin expression is the cause of the high bone mass human s...
Sclerostin has been identified as an important regulator of bone homeostasis through inhibition of t...
Sclerosteosis is a rare high bone mass disease that is caused by inactivating mutations in the SOST ...
The glycoprotein sclerostin has been identified as a negative regulator of bone growth. It exerts it...
The bone formation inhibitor sclerostin encoded by SOST binds in vitro to low-density lipoprotein re...
The WNT pathway has become an attractive target for skeletal therapies. High-bone-mass phenotypes in...
Sclerostin is an osteocyte-derived negative regulator of bone formation. It inhibits BMP-stimulated ...
Sclerostin is secreted from osteocytes, binds to the Wnt co-receptor Lrp5/6, and affects the interac...
Abstract. Wnt signaling is involved not only in embryonic development but also in maintenance of hom...
Low-density lipoprotein receptor-related protein 6 (LRP6) is a coreceptor of the beta -catenin-depen...
<div><p>The cystine-knot containing protein Sclerostin is an important negative regulator of bone gr...
The cystine-knot containing protein Sclerostin is an important negative regulator of bone growth and...
AbstractMechanical loading is the primary functional determinant of bone mass and architecture, and ...
Background: Sclerosteosis, a severe autosomal recessive sclerosing skeletal dysplasia characterised ...
Sclerosteosis is a severe autosomal recessive sclerosing skeletal dysplasia with no available treatm...
After discovering that lack of Sost/sclerostin expression is the cause of the high bone mass human s...
Sclerostin has been identified as an important regulator of bone homeostasis through inhibition of t...