首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Ca~(2+) influx is an essential component of the positive-feedback loop that maintains leading-edge structure and activity in macrophages
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Ca~(2+) influx is an essential component of the positive-feedback loop that maintains leading-edge structure and activity in macrophages

机译:Ca〜(2+)流入是正反馈回路的重要组成部分,可维持巨噬细胞的前沿结构和活性

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摘要

In migrating eukaryotic cells, phosphatidylinositol 3-kinase (PI3K), filamentous actin (F-actin), and monomeric Rho GTPases are key components of a complex positive-feedback system that maintains and amplifies a phosphatidylinositol-3,4,5-trisphosphate signal at the leading edge of the cell. This lipid signal is required for cell polarization and movement. In leukocytes and Dictyostelium, activation or inhibition of any one of these components leads to the activation or inhibition, respectively, of the others via undefined feedback interactions. The role of Ca~(2+) signals in migrating leukocytes is controversial, and there has been no indication that Ca~(2+) participates in positive feedback. Here, we demonstrate that an extracellular Ca~(2+) influx is required for positive feedback at the leading edge of spontaneously polarized macrophages. Inhibition of extracellular Ca~(2+) influx leads to loss of leading-edge PI3K activity, disassembly of F-actin, cessation of ruffling, and decay of chemoattractant signals. Conversely, increasing cytosolic Ca~(2+) enhances membrane ruffling, PI3K activity, and F-actin accumulation. Overall, these findings demonstrate that an extracellular Ca~(2+) influx is an essential component, together with PI3K and F-actin, of the positive-feedback cycle that maintains leading-edge structure and ruffling activity and that supports the chemoattractant response. Strikingly, the Ca~(2+)-sensitive enzyme protein kinase Cα (PKCα) is enriched at the leading edge, and its enrichment is sensitive to blockade of Ca~(2+) influx, to inhibition of PI3K activity, and to F-actin depolymerization. These findings support the working hypothesis that a local, leading-edge Ca~(2+) signal recruits PKCα as a central player in the positive-feedback loop.
机译:在迁移的真核细胞中,磷脂酰肌醇3-激酶(PI3K),丝状肌动蛋白(F-肌动蛋白)和单体Rho GTPases是维持和放大磷脂酰肌醇-3,4,5-三磷酸信号的复杂正反馈系统的关键组件。在单元的前沿。该脂质信号是细胞极化和运动所必需的。在白细胞和盘基网柄菌中,这些成分中任何一种的激活或抑制分别通过不确定的反馈相互作用导致其他成分的激活或抑制。 Ca〜(2+)信号在迁移的白细胞中的作用是有争议的,没有迹象表明Ca〜(2+)参与正反馈。在这里,我们证明了细胞外Ca〜(2+)流入是自发极化巨噬细胞前沿的正反馈所必需的。细胞外Ca〜(2+)内流的抑制导致前沿PI3K活性的丧失,F-肌动蛋白的分解,起伏的停止以及趋化性信号的衰减。相反,增加的胞质Ca〜(2+)会增强膜的波纹,PI3K活性和F-肌动蛋白的积累。总体而言,这些发现表明,细胞外Ca〜(2+)流入与PI3K和F-肌动蛋白一起是正反馈循环的重要组成部分,该循环维持前沿结构和波纹功能并支持化学吸引反应。令人惊讶的是,Ca〜(2+)敏感酶蛋白激酶Cα(PKCα)在前端富集,并且其富集对阻断Ca〜(2+)流入,抑制PI3K活性和F敏感。 -肌动蛋白解聚。这些发现支持了一个工作假说,即一个局部的前沿Ca〜(2+)信号招募PKCα作为正反馈回路中的中心角色。

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