Abstract Bone remodeling is an extraordinarily complex process involving a variety of factors, such as genetic, metabolic, and environmental components. Although genetic factors play a particularly important role, many have not been identified. In this study, we investigated the role of transmembrane 161a (Tmem161a) in bone structure and function using wild-type (WT) and Tmem161a-depleted (Tmem161aGT/GT) mice. Mice femurs were examined by histological, morphological, and bone strength analyses. Osteoblast differentiation and mineral deposition were examined in Tmem161a-overexpressed, -knockdown and -knockout MC3T3-e1 cells. In WT mice, Tmem161a was expressed in osteoblasts of femurs; however, it was depleted in Tmem161aGT/GT mice. Cortical ...
AMPKα2 is a catalytic subunit of AMPK, which is a key regulator for cellular and whole body energy h...
Background: p38 MAPK activity plays an important role in several steps of the osteoblast lineage pro...
The human skeleton undergoes continuous bone remodeling, a process relying on orchestrated balance b...
Recently, we demonstrated that osteoblast-specific overexpression of human WNT16 increased both cort...
Previous genome-wide association studies have identified common variants in genes associated with bo...
Abstract Background Osteoporosis is a common bone disease in elderly population caused by imbalanced...
TMBIM6 is an endoplasmic reticulum (ER) protein that modulates various physiological and pathologica...
Objective: Increased protein phosphatase magnesium-dependent 1A (PPM1A) levels in patients with anky...
AbstractTmem173 was identified as a growth inhibitor associated with major histocompatibility comple...
<div><p>Bone homeostasis is affected by several factors, particularly mechanical loading and growth ...
Genome-wide association studies (GWAS) have identified a large number of candidate genes believed to...
Abstract The main driver of osteoporosis is an imbalance between bone resorption and formation. The ...
Bone homeostasis is affected by several factors, particularly mechanical loading and growth factor s...
Abstract Substantial progress has been made in the therapeutic reduction of vertebral fracture risk...
The WNT16 locus is a major determinant of cortical bone thickness and nonvertebral fracture risk in ...
AMPKα2 is a catalytic subunit of AMPK, which is a key regulator for cellular and whole body energy h...
Background: p38 MAPK activity plays an important role in several steps of the osteoblast lineage pro...
The human skeleton undergoes continuous bone remodeling, a process relying on orchestrated balance b...
Recently, we demonstrated that osteoblast-specific overexpression of human WNT16 increased both cort...
Previous genome-wide association studies have identified common variants in genes associated with bo...
Abstract Background Osteoporosis is a common bone disease in elderly population caused by imbalanced...
TMBIM6 is an endoplasmic reticulum (ER) protein that modulates various physiological and pathologica...
Objective: Increased protein phosphatase magnesium-dependent 1A (PPM1A) levels in patients with anky...
AbstractTmem173 was identified as a growth inhibitor associated with major histocompatibility comple...
<div><p>Bone homeostasis is affected by several factors, particularly mechanical loading and growth ...
Genome-wide association studies (GWAS) have identified a large number of candidate genes believed to...
Abstract The main driver of osteoporosis is an imbalance between bone resorption and formation. The ...
Bone homeostasis is affected by several factors, particularly mechanical loading and growth factor s...
Abstract Substantial progress has been made in the therapeutic reduction of vertebral fracture risk...
The WNT16 locus is a major determinant of cortical bone thickness and nonvertebral fracture risk in ...
AMPKα2 is a catalytic subunit of AMPK, which is a key regulator for cellular and whole body energy h...
Background: p38 MAPK activity plays an important role in several steps of the osteoblast lineage pro...
The human skeleton undergoes continuous bone remodeling, a process relying on orchestrated balance b...