首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Dual mechanism of intercellular communication in HOBIT osteoblastic cells: a role for gap-junctional hemichannels.
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Dual mechanism of intercellular communication in HOBIT osteoblastic cells: a role for gap-junctional hemichannels.

机译:HOBIT成骨细胞中细胞间通讯的双重机制:缝隙连接半通道的作用。

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摘要

Intercellular communication allows tissue coordination of cell metabolism and sensitivity to extracellular stimuli. Paracrine stimulation and cell-to-cell coupling through gap junctions induce the formation of complex cellular networks, which favors the intercellular exchange of nutrients and second messengers. Intercellular Ca2+ signaling was investigated in human osteoblast-like initial transfectant (HOBIT) cells, a human osteoblastic cell line in which cells retain most of the osteoblastic differentiation markers. HOBIT cells express connexin43 (Cx43) clustered at the cell-to-cell boundary and display functional intercellular coupling as assessed by the intercellular transfer of Lucifer yellow. Mechanical stimulation of a single cell induced a wave of increased Ca2+ that was radially propagated to surrounding cells. Treatment of cells with thapsigargin blocked mechanically induced signal propagation. Intercellular Ca2+ spreading and dye transfer were inhibited by 18alpha-glycyrrhetinic acid (18-GA), showing the involvement of gap junctions in signal propagation. Pretreatment of cells with suramin or with apyrase decreased the extent of wave propagation, suggesting that ATP-mediated paracrine stimulation contribute to cell-to-cell signaling. The functional expression of gap-junctional hemichannels was evidenced in experiments of Mn2+ quenching, extracellular dye uptake, and intracellular Ca2+ release, activated by uptake of inositol 1,4,5-trisphosphate (InsP3) from the external medium. Gap-junctional hemichannels were activated by low extracellular Ca2+ concentrations and inhibited by 18-GA. A role for Cx hemichannels in adenosine triphosphate (ATP) release and paracrine stimulation is suggested.
机译:细胞间的通讯使组织协调细胞的代谢和对细胞外刺激的敏感性。旁分泌刺激和通过间隙连接的细胞间耦合诱导了复杂细胞网络的形成,这有利于营养物和第二信使的细胞间交换。在人类成骨细胞样初始转染子(HOBIT)细胞中研究了细胞间Ca2 +信号传导,HOBIT细胞是一种人类成骨细胞系,其中细胞保留了大多数成骨细胞分化标记。 HOBIT细胞表达聚集在细胞间边界的连接蛋白43(Cx43),并通过路西法黄的细胞间转移评估显示功能性细胞间偶联。机械刺激单个细胞会引起Ca2 +升高,并径向传播到周围的细胞。用毒胡萝卜素处理细胞会阻止机械诱导的信号传播。细胞间Ca2 +的扩散和染料转移被18alpha-甘草次酸(18-GA)抑制,表明间隙连接参与信号传播。用苏拉明或腺苷三磷酸双磷酸酶预处理细胞会降低波传播的程度,表明ATP介导的旁分泌刺激有助于细胞间信号传导。间隙连接半通道的功能性表达在Mn2 +淬灭,细胞外染料吸收和细胞内Ca2 +释放的实验中得到了证明,这些释放是通过从外部介质中摄取肌醇1,4,5-三磷酸(InsP3)来激活的。间隙连接半通道被低的细胞外Ca2 +浓度激活,并被18-GA抑制。建议Cx半通道在三磷酸腺苷(ATP)释放和旁分泌刺激中的作用。

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