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Effects of cAMP on intercellular coupling and osteoblast differentiation
- Publication Year :
- 2001
-
Abstract
- Bone-forming cells are organized in a multicellular network interconnected by gap junctions. Direct intercellular communication via gap junctions is an important component of bone homeostasis, coordinating cellular responses to external signals and promoting osteoblast differentiation. The cAMP pathway, a major intercellular signal transduction mechanism, regulates osteoblastic function and metabolism. We investigated the effects of this second messenger on junctional communication and on the expression of differentiation markers in human HOBIT osteoblastic cells. Increased levels of cAMP induce posttranslational modifications (i.e., phosphorylations) of connexin43 and enhancement of gap junction assembly, resulting in an increased junctional permeance to Lucifer yellow and to a positive modulation of intercellular Ca2+ waves. Increased intercellular communication, however, was accompanied by a parallel decrease of alkaline phosphatase activity and by an increase of osteocalcin expression. cAMP-dependent stimulation of cell-to-cell coupling induces a complex modulation of bone differentiation markers.
- Subjects :
- Cell Membrane Permeability
Phosphodiesterase Inhibitors
Osteocalcin
Biophysics
Cell Communication
Biology
Biochemistry
Gap junction assembly
Cell Line
chemistry.chemical_compound
medicine
Cyclic AMP
Humans
Calcium Signaling
RNA, Messenger
Phosphorylation
Molecular Biology
Lucifer yellow
Osteoblasts
Colforsin
Gap junction
Gap Junctions
Osteoblast
Cell Differentiation
Cell Biology
Alkaline Phosphatase
Antigens, Differentiation
Cell biology
medicine.anatomical_structure
chemistry
Connexin 43
Second messenger system
biology.protein
cAMP-dependent pathway
Signal transduction
Signal Transduction
Subjects
Details
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....1178ee87caab0ca237c8e8b89e772aab