Mutations in the 2Cl(-)/1H(+)-exchanger ClC-7 impair osteoclast function and cause different types of osteoclast-rich osteopetrosis. However, it is unknown to what extent ClC-7 function has to be reduced to become rate-limiting for bone resorption. In osteoclasts from osteopetrosis patients expression of the mutated ClC-7 protein did not correlate with disease severity and resorption impairment. Therefore, a series of transgenic mice expressing ClC-7 in osteoclasts at different levels was generated. Crossing of these mice with Clcn7(-/-) mutants rescued the osteopetrotic phenotype to variable degrees. One resulting double transgenic line mimicked human autosomal dominant osteopetrosis. The trabecular bone of these mice showed a reduction of...
Microphthalmia transcription factor (MITF) regulates osteoclast function by controling the expressio...
Autosomal dominant osteopetrosis type II (ADO2) is a heritable osteosclerotic disorder dependent on ...
Osteoclasts are multinucleated bone-resorbing cells responsible for constant remodeling of bone tiss...
Bone development is dependent on the functionality of three essential cell types: chondrocytes, oste...
AbstractBone development is dependent on the functionality of three essential cell types: chondrocyt...
ClC-7 is a ubiquitously expressed chloride channel that is mainly localized in late endosomes and ly...
ClC-7 is a ubiquitously expressed chloride channel that is mainly localized in late endosomes and ly...
Osteopetrosis is an inherited disorder of impaired bone resorption with the most commonly affected g...
AbstractChloride channels play important roles in the plasma membrane and in intracellular organelle...
Mutations in ClC-7, a late endosomal/lysosomal member of the CLC family of chloride channels and tra...
ClC-7 is a chloride channel of late endosomes and lysosomes. In osteoclasts, it may cooperate with H...
Chloride/proton exchange by the lysosomal anion transporter ClC-7/Ostm1 is of pivotal importance for...
Loss of the lysosomal ClC-7/Ostm1 2Cl(-)/H(+) exchanger causes lysosomal storage disease and osteope...
CLC proteins comprise Cl− channels and anion/H+ antiporters involved in several fundamental physiolo...
ClC-7, located in late endosomes and lysosomes, is critical for the function of osteoclasts. Secreti...
Microphthalmia transcription factor (MITF) regulates osteoclast function by controling the expressio...
Autosomal dominant osteopetrosis type II (ADO2) is a heritable osteosclerotic disorder dependent on ...
Osteoclasts are multinucleated bone-resorbing cells responsible for constant remodeling of bone tiss...
Bone development is dependent on the functionality of three essential cell types: chondrocytes, oste...
AbstractBone development is dependent on the functionality of three essential cell types: chondrocyt...
ClC-7 is a ubiquitously expressed chloride channel that is mainly localized in late endosomes and ly...
ClC-7 is a ubiquitously expressed chloride channel that is mainly localized in late endosomes and ly...
Osteopetrosis is an inherited disorder of impaired bone resorption with the most commonly affected g...
AbstractChloride channels play important roles in the plasma membrane and in intracellular organelle...
Mutations in ClC-7, a late endosomal/lysosomal member of the CLC family of chloride channels and tra...
ClC-7 is a chloride channel of late endosomes and lysosomes. In osteoclasts, it may cooperate with H...
Chloride/proton exchange by the lysosomal anion transporter ClC-7/Ostm1 is of pivotal importance for...
Loss of the lysosomal ClC-7/Ostm1 2Cl(-)/H(+) exchanger causes lysosomal storage disease and osteope...
CLC proteins comprise Cl− channels and anion/H+ antiporters involved in several fundamental physiolo...
ClC-7, located in late endosomes and lysosomes, is critical for the function of osteoclasts. Secreti...
Microphthalmia transcription factor (MITF) regulates osteoclast function by controling the expressio...
Autosomal dominant osteopetrosis type II (ADO2) is a heritable osteosclerotic disorder dependent on ...
Osteoclasts are multinucleated bone-resorbing cells responsible for constant remodeling of bone tiss...