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肌内皮缝隙连接信号诱导肺动脉平滑肌细胞分化。

Myoendothelial gap junctional signaling induces differentiation of pulmonary arterial smooth muscle cells.

机构信息

Department of Pharmacology, College of Medicine, University of South Alabama, Mobile, 36688, USA.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2011 Oct;301(4):L527-35. doi: 10.1152/ajplung.00091.2011. Epub 2011 Jul 29.

Abstract

Myoendothelial gap junctions are involved in regulating systemic arterial smooth muscle cell phenotype and function, but their role in the regulation of pulmonary arterial smooth muscle cell (PASMC) phenotype is unknown. We therefore investigated in cocultured pulmonary arterial endothelial cells (PAECs) and PASMCs whether myoendothelial gap junctional signaling played a role in PAEC-dependent regulation of PASMC phenotype. Rat PAECs and PASMCs were cocultured on opposite sides of a porous Transwell membrane that permitted formation of heterotypic cell-cell contacts. Immunostaining showed expression of the gap junctional protein connexin 43 (Cx43) on projections extending into the membrane from both cell types. Dye transfer exhibited functional gap junctional communication from PAECs to PASMCs. PASMCs cocultured with PAECs had a more contractile-like phenotype (spindle shape and increased expression of the contractile proteins myosin heavy chain, H1-calponin, and α-smooth muscle cell-actin) than PASMCs cocultured with PASMCs or cocultured without direct contact with PAECs. Transforming growth factor (TGF)-β1 signaling was activated in PASMCs cocultured with PAECs, and the PASMC differentiation was inhibited by TGF-β type I receptor blockade. Inhibition of gap junctional communication pharmacologically or by knock down of Cx43 in PAECs blocked TGF-β signaling and PASMC differentiation. These results implicate myoendothelial gap junctions as a gateway for PAEC-derived signals required for maintaining TGF-β-dependent PASMC differentiation. This study identifies an alternative pathway to paracrine signaling to convey regulatory signals from PAECs to PASMCs and raises the possibility that dysregulation of this direct interaction is involved in the pathogenesis of hypertensive pulmonary vascular remodeling.

摘要

肌内皮缝隙连接参与调节全身动脉平滑肌细胞的表型和功能,但它们在肺动脉平滑肌细胞(PASMC)表型调节中的作用尚不清楚。因此,我们在共培养的肺动脉内皮细胞(PAEC)和 PASMC 中研究了肌内皮缝隙连接信号是否在 PAEC 依赖性调节 PASMC 表型中发挥作用。将大鼠 PAEC 和 PASMC 共培养在多孔 Transwell 膜的相对侧,该膜允许形成异型细胞-细胞接触。免疫染色显示两种细胞类型的突起中均表达缝隙连接蛋白连接蛋白 43(Cx43)。染料转移显示了从 PAEC 到 PASMC 的功能性缝隙连接通讯。与 PAEC 共培养的 PASMC 具有更收缩样表型(梭形和收缩蛋白肌球蛋白重链、H1-钙调蛋白和α-平滑肌细胞肌动蛋白表达增加),而与 PASMC 共培养或没有与 PAEC 直接接触共培养的 PASMC 则不具有收缩样表型。与 PAEC 共培养的 PASMC 中转化生长因子(TGF)-β1 信号被激活,并且 TGF-β Ⅰ型受体阻断抑制 PASMC 分化。缝隙连接通讯的药理学抑制或 PAEC 中 Cx43 的敲低阻断了 TGF-β 信号和 PASMC 分化。这些结果表明肌内皮缝隙连接作为 PAEC 衍生信号所需的门户,用于维持 TGF-β 依赖性 PASMC 分化。本研究确定了一种旁分泌信号的替代途径,以将调节信号从 PAEC 传递到 PASMC,并提出了这种直接相互作用失调可能参与高血压性肺血管重构发病机制的可能性。

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