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胶原 I 通过整合素 α2β1 与 TGFβ1 诱导的肾小管上皮细胞结合来调节缝隙连接蛋白 43 半通道活性。

Collagen I Modifies Connexin-43 Hemichannel Activity via Integrin α2β1 Binding in TGFβ1-Evoked Renal Tubular Epithelial Cells.

机构信息

Joseph Banks Laboratories, School of Life Sciences, University of Lincoln, Lincoln LN6 7DL, UK.

Department of Ophthalmology and New Zealand National Eye Centre, University of Auckland, Auckland 1142, New Zealand.

出版信息

Int J Mol Sci. 2021 Mar 31;22(7):3644. doi: 10.3390/ijms22073644.

Abstract

Chronic Kidney Disease (CKD) is associated with sustained inflammation and progressive fibrosis, changes that have been linked to altered connexin hemichannel-mediated release of adenosine triphosphate (ATP). Kidney fibrosis develops in response to increased deposition of extracellular matrix (ECM), and up-regulation of collagen I is an early marker of renal disease. With ECM remodeling known to promote a loss of epithelial stability, in the current study we used a clonal human kidney (HK2) model of proximal tubular epithelial cells to determine if collagen I modulates changes in cell function, via connexin-43 (Cx43) hemichannel ATP release. HK2 cells were cultured on collagen I and treated with the beta 1 isoform of the pro-fibrotic cytokine transforming growth factor (TGFβ1) ± the Cx43 mimetic Peptide 5 and/or an anti-integrin α2β1 neutralizing antibody. Phase microscopy and immunocytochemistry observed changes in cell morphology and cytoskeletal reorganization, whilst immunoblotting and ELISA identified changes in protein expression and secretion. Carboxyfluorescein dye uptake and biosensing measured hemichannel activity and ATP release. A Cytoselect extracellular matrix adhesion assay assessed changes in cell-substrate interactions. Collagen I and TGFβ1 synergistically evoked increased hemichannel activity and ATP release. This was paralleled by changes to markers of tubular injury, partly mediated by integrin α2β1/integrin-like kinase signaling. The co-incubation of the hemichannel blocker Peptide 5, reduced collagen I/TGFβ1 induced alterations and inhibited a positive feedforward loop between Cx43/ATP release/collagen I. This study highlights a role for collagen I in regulating connexin-mediated hemichannel activity through integrin α2β1 signaling, ahead of establishing Peptide 5 as a potential intervention.

摘要

慢性肾脏病(CKD)与持续的炎症和进行性纤维化有关,这些变化与缝隙连接半通道介导的三磷酸腺苷(ATP)释放改变有关。肾脏纤维化是对外源性细胞外基质(ECM)沉积增加的反应,胶原 I 的上调是肾脏疾病的早期标志物。已知 ECM 重塑会促进上皮稳定性丧失,在本研究中,我们使用克隆人肾(HK2)近端肾小管上皮细胞模型,确定胶原 I 是否通过缝隙连接蛋白 43(Cx43)半通道 ATP 释放调节细胞功能变化。HK2 细胞在胶原 I 上培养,并接受β1 同工型促纤维化细胞因子转化生长因子(TGFβ1)±缝隙连接模拟肽 5 和/或抗整合素α2β1 中和抗体处理。相差显微镜和免疫细胞化学观察细胞形态和细胞骨架重排的变化,而免疫印迹和 ELISA 鉴定蛋白表达和分泌的变化。羧基荧光素染料摄取和生物传感器测量半通道活性和 ATP 释放。Cytoselect 细胞外基质粘附测定评估细胞-基质相互作用的变化。胶原 I 和 TGFβ1 协同唤起增加的半通道活性和 ATP 释放。这与管状损伤标志物的变化平行,部分由整合素α2β1/整合素样激酶信号介导。半通道阻滞剂肽 5 的共孵育,减少了胶原 I/TGFβ1 诱导的改变,并抑制了 Cx43/ATP 释放/胶原 I 之间的正反馈环。这项研究强调了胶原 I 通过整合素α2β1 信号调节缝隙连接介导的半通道活性的作用,为肽 5 作为一种潜在的干预措施奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4593/8038016/f872fa4c0698/ijms-22-03644-g001.jpg

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