Geneau Graziello, Defamie Norah, Mesnil Marc, Cronier Laurent
Institut de Physiologie et de Biologie Cellulaires, CNRS UMR6187, Université de Poitiers, 40 avenue du recteur Pineau, 86022, Poitiers, France.
J Membr Biol. 2007 Jun;217(1-3):71-81. doi: 10.1007/s00232-007-9024-1. Epub 2007 Jun 14.
During bone remodeling, osteoblastic (OB) cells have a central role leading to the production of extracellular matrix and its subsequent mineralization. As revealed by human physiopathologies, the OB differentiation process is essential for the control of calcium metabolism and normal bone formation. Moreover, accumulating data in the field of bone development suggest that connexin 43 (Cx43)-mediated gap junctional communication plays an important role in OB differentiation and function. Since Ca(2+) has a central role in OB physiology, the aim of the present study was to investigate the hypothetical involvement of Cx43 in OB calcium homeostasis. We performed measurements of intracellular calcium activity (Ca(2+)) by a cytofluorimetric method using Fluo-4 as a calcium indicator and endothelin-1 (ET-1) as a physiological calcium-mobilizing factor on cultured OB cells isolated from calvaria of Cx43(+/-) and Cx43(+/+) mice. Partial deletion of the Cx43 gene induced a significant decrease in the Ca(2+) rise elicited by ET-1. This reduction was not correlated to a decrease or a modification of ET receptor subtype expression as assessed by real-time reverse-transcription polymerase chain reaction. Pharmacological investigations led us to demonstrate that the significant difference in Ca(2+) peak amplitude during the ET-1 action was associated with decreased calcium influx involving L-type voltage-sensitive calcium channels, whereas calcium release from intracellular stores and implication of phospholipase C were not affected by the reduced expression of Cx43. In conclusion, our data demonstrate for the first time that the Cx43 level of expression and/or function is able to modulate the Ca(2+) mobilization in OB cells.
在骨重塑过程中,成骨细胞(OB)在导致细胞外基质产生及其随后矿化方面发挥着核心作用。人类病理生理学研究表明,OB分化过程对于钙代谢的控制和正常骨形成至关重要。此外,骨发育领域积累的数据表明,连接蛋白43(Cx43)介导的缝隙连接通讯在OB分化和功能中起重要作用。由于Ca(2+)在OB生理学中起核心作用,本研究的目的是探讨Cx43在OB钙稳态中的假设作用。我们使用Fluo-4作为钙指示剂,内皮素-1(ET-1)作为生理钙动员因子,通过细胞荧光法对从Cx43(+/-)和Cx43(+/+)小鼠颅骨分离的培养OB细胞进行细胞内钙活性(Ca(2+))测量。Cx43基因的部分缺失导致ET-1引起的Ca(2+)升高显著降低。通过实时逆转录聚合酶链反应评估,这种降低与ET受体亚型表达的降低或改变无关。药理学研究使我们证明,ET-1作用期间Ca(2+)峰值幅度的显著差异与涉及L型电压敏感性钙通道的钙内流减少有关,而细胞内钙库的钙释放和磷脂酶C的作用不受Cx43表达降低的影响。总之,我们的数据首次证明Cx43的表达水平和/或功能能够调节OB细胞中的Ca(2+)动员。