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Bone constantly remodels between resorption by osteoclasts and formation by osteoblasts;therefore the functions of osteoblasts are pivotal for maintaining homeostasis of bone mass.Transient receptor potential vanilloid 4 (TRPV4),a type of mechanosensitive channel,has been reported to be a key regulator in bone remodeling.However,the relationship between TRPV4 and osteoblast function remains largely elusive.Only little is known about the spatial distribution change of TRPV4 during osteoblastic differentiation and related signal events.Based on three-dimensional super-resolution microscopy,our results clearly showed a different distribution of TRPV4 in undifferentiated and differentiated osteoblasts,which reflected the plasma membrane translocation of TRPV4 along with prolonged differentiation.GSK1016790A (GSK101),the most potent agonist of TRPV4,triggered rapid calcium entry and calmodulin-dependent protein kinase Ⅱ (CaMKII) phosphorylation via TRPV4 activation in a differentiation-dependent manner,indicating that the abundance of TRPV4 at the cell surface resulting from differentiation may be related to the modulation of Ca2+ response and CaMKII activity.These data provide compelling evidences for the plasma membrane translocation of TRPV4 during osteoblastic differentiation as well as demonstrate the regulation of downstream Ca2+/CaMKII signaling.
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篇名 Regulation of intracellular Ca2+/CaMKII signaling by TRPV4 membrane translocation during osteoblastic differentiation
来源期刊 生物物理学报 学科
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年,卷(期) 2019,(5) 所属期刊栏目
研究方向 页码范围 254-263
页数 10页 分类号
字数 语种 中文
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期刊影响力
生物物理学报
双月刊
1000-6737
11-1992/Q
大16开
北京市朝阳区大屯路15号中国科学院生物物理研究所
1985
chi
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1662
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4
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12572
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