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Actin cytoskeleton mediates BMP2-Smad signaling via calponin 1 in preosteoblast under simulated microgravity.

Biochimie.. 2017-07; 
Xu H,Wu F,Zhang H,Yang C,Li K,Wang H,Yang H,Liu Y,Ding B,Tan Y,Yuan M,Li Y,Dai Z.
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PCR Cloning and Subcloning ... 2.2. Vector construction and overexpression. Open reading frame of CNN1 was synthesized by GenScript (Nanjing, China), then inserted into pCDNA3.1-Myc/His vector by EcoR I and Xho I. The constructed vector was named as pcDNA3.1-CNN1-Myc. … Get A Quote

摘要

Microgravity influences the activity of osteoblast, induces actin microfilament disruption and leads to bone loss during spaceflight. Mechanical stress such as gravity, regulates cell function, response and differentiation through dynamic cytoskeleton changes, but the mechanotransduction mechanism remains to be fully elucidated. Previous, we demonstrated actin microfilament mediated osteoblast Cbfa1 responsiveness to BMP2 under simulated microgravity (SMG). Here, we explored a potential molecular and its detailed mechanism of actin cytoskeleton functioning on BMP2-Smad signaling in MC3T3-E1 under SMG. Results showed that the actin microfilament-disrupting agent, cytochalasin B (CB), reduced BMP2-induced activat... More

关键词

Bone morphogenetic proteins; Calponin 1; Mechanotransduction; Microfilament cytoskeleton; Microgravity; Osteoblast