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Mechanisms of integrin-mediated calcium signaling in MDCK cells: regulation of adhesion by IP3- and store-independent calcium influx.

机译:MDCK细胞中整合素介导的钙信号转导的机制:IP3-和存储独立的钙流入调节粘附。

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摘要

Peptides containing Arg-Gly-Asp (RGD) immobilized on beads bind to integrins and trigger biphasic, transient increases in intracellular free Ca2+ ([Ca2+]i) in Madin-Darby canine kidney epithelial cells. The [Ca2+]i increase participates in feedback regulation of integrin-mediated adhesion in these cells. We examined influx pathways and inositol 1,4,5-trisphosphate (IP3)-mediated Ca2+ store release as possible sources of the [Ca2+]i rise. The RGD-induced [Ca2+]i response requires external Ca2+ (threshold approximately 150 microM), and its magnitude is proportional to extracellular calcium. RGD-induced transients were attenuated by Ca2+ channel inhibitors (Ni2+ and carboxy-amidotriazole) or by plasma membrane depolarization, indicating that Ca2+ influx contributes to the response. Loading cells with heparin reduced the size of RGD-induced [Ca2+]i transients, indicating that IP3-mediated release of Ca2+ from stores may also contribute to the RGD response. Depletion of Ca2+ stores with thapsigargin activated Ni(2+)-sensitive Ca2+ influx that might also be expected to occur after IP3-mediated depletion of stored Ca2-. However, RGD elicited a Ni(2+)-sensitive Ca2+ influx even after pretreatment with thapsigargin, indicating that Ca2+ influx is controlled by a mechanism independent of IP3-mediated store depletion. We conclude that RGD-induced [Ca2+]i transients in Madin-Darby canine kidney cells result primarily from the combination of two distinct mechanisms: 1) IP3-mediated release of intracellular stores, and 2) activation of a Ca2+ influx pathway regulated independently of IP3 and Ca2+ store release. Because Ni2+ and carboxy-amidotriazole inhibited adhesion, whereas store depletion with thapsigargin had little effect, we suggest that the Ca2+ influx mechanism is most important for feedback regulation of integrin-mediated adhesion by increased [Ca2+]i.
机译:Madin-Darby犬肾上皮细胞中,固定在微珠上的包含Arg-Gly-Asp(RGD)的肽与整联蛋白结合并触发细胞内游离Ca2 +([Ca2 +] i)的双相瞬时增加。 [Ca2 +] i的增加参与了这些细胞中整合素介导的粘附的反馈调节。我们检查了流入途径和肌醇1,4,5-三磷酸(IP3)介导的Ca2 +存储释放作为[Ca2 +] i升高的可能来源。 RGD诱导的[Ca2 +] i反应需要外部Ca2 +(阈值约150 microM),其大小与细胞外钙成正比。 RGD诱导的瞬变通过Ca2 +通道抑制剂(Ni2 +和羧基-氨基三唑)或质膜去极化减弱,表明Ca2 +内流有助于反应。用肝素加载细胞减少了RGD诱导的[Ca2 +] i瞬变的大小,表明IP3介导的Ca2 +从存储中的释放也可能有助于RGD响应。与毒胡萝卜素激活的Ni(2+)敏感的Ca2 +涌入的Ca2 +存储耗尽,也可能在IP3介导的存储Ca2耗尽之后发生。但是,RGD甚至在用thapsigargin预处理后仍引起Ni(2+)敏感的Ca2 +流入,表明Ca2 +流入受独立于IP3介导的存储耗竭机制的控制。我们得出的结论是,RGD诱导的Madin-Darby犬肾细胞中的[Ca2 +] i瞬变主要是由以下两种不同的机制共同导致的:1)IP3介导的细胞内存储释放,以及2)活化的Ca2 +内流途径独立于IP3和Ca2 +商店发布。因为Ni2 +和羧基酰胺基三唑会抑制粘附,而用毒胡萝卜素对存储的消耗几乎没有影响,所以我们建议Ca2 +内流机制对于[Ca2 +] i的增加对整合素介导的粘附的反馈调节最为重要。

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