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An EPAC1/PDE1C-Signaling Axis Regulates Formation of Leading-Edge Protrusion in Polarized Human Arterial Vascular Smooth Muscle Cells

机译:EPAC1 / PDE1C信号轴调节极化的人类动脉血管平滑肌细胞中前缘突起的形成

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摘要

Pharmacological activation of protein kinase A (PKA) reduces migration of arterial smooth muscle cells (ASMCs), including those isolated from human arteries (HASMCs). However, when individual migration-associated cellular events, including the polarization of cells in the direction of movement or rearrangements of the actin cytoskeleton, are studied in isolation, these individual events can be either promoted or inhibited in response to PKA activation. While pharmacological inhibition or deficiency of exchange protein activated by cAMP-1 (EPAC1) reduces the overall migration of ASMCs, the impact of EPAC1 inhibition or deficiency, or of its activation, on individual migration-related events has not been investigated. Herein, we report that EPAC1 facilitates the formation of leading-edge protrusions (LEPs) in HASMCs, a critical early event in the cell polarization that underpins their migration. Thus, RNAi-mediated silencing, or the selective pharmacological inhibition, of EPAC1 decreased the formation of LEPs by these cells. Furthermore, we show that the ability of EPAC1 to promote LEP formation by migrating HASMCs is regulated by a phosphodiesterase 1C (PDE1C)-regulated “pool” of intracellular HASMC cAMP but not by those regulated by the more abundant PDE3 or PDE4 activities. Overall, our data are consistent with a role for EPAC1 in regulating the formation of LEPs by polarized HASMCs and show that PDE1C-mediated cAMP hydrolysis controls this localized event.
机译:蛋白激酶A(PKA)的药理激活可减少动脉平滑肌细胞(ASMC)的迁移,包括从人动脉(HASMC)分离的平滑肌细胞的迁移。但是,当单独研究与迁移相关的单个细胞事件,包括细胞在肌动蛋白细胞骨架运动方向上的极化或重排时,可以响应于PKA激活而促进或抑制这些单个事件。虽然由cAMP-1(EPAC1)激活的交换蛋白在药理学上的抑制或缺乏会降低ASMC的总体迁移,但尚未研究EPAC1抑制或缺乏或对其激活对单个迁移相关事件的影响。本文中,我们报道EPAC1促进HASMC中前沿突起(LEP)的形成,这是细胞极化的关键早期事件,是其迁移的基础。因此,RNAi介导的EPAC1沉默或选择性药理抑制可减少这些细胞形成LEP的过程。此外,我们表明,EPAC1通过迁移HASMC促进LEP形成的能力受磷酸二酯酶1C(PDE1C)调控的细胞内HASMC cAMP的“池”的调控,但不受那些受更丰富的PDE3或PDE4活性调控的调控。总体而言,我们的数据与EPAC1在调节极化HASMCs形成LEPs中的作用一致,并表明PDE1C介导的cAMP水解控制了这一局部事件。

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