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适度的静压通过与细胞形状和细胞骨架修饰相关联来抑制柱状上皮细胞生长。

Modest Static Pressure Suppresses Columnar Epithelial Cell Growth in Association with Cell Shape and Cytoskeletal Modifications.

作者信息

Hagiyama Man, Yabuta Norikazu, Okuzaki Daisuke, Inoue Takao, Takashima Yasutoshi, Kimura Ryuichiro, Ri Aritoshi, Ito Akihiko

机构信息

Department of Pathology, Faculty of Medicine, Kindai University, Osaka-Sayama, Japan.

Department of Oncogene Research, Osaka University, Suita, Japan.

出版信息

Front Physiol. 2017 Dec 5;8:997. doi: 10.3389/fphys.2017.00997. eCollection 2017.

Abstract

Intraluminal pressure elevation can cause degenerative disorders, such as ileus and hydronephrosis, and the threshold is fairly low and constant, 20-30 cm HO. We previously devised a novel two-chamber culture system subjecting cells cultured on a semipermeable membrane to increased culture medium height (water pressure up to 60 cm HO). Here, we sought to determine how a continuous pressure load of ~30 cm HO affects proliferating epithelial cells with special interest in the link with cell morphology. We cultured several different cell lines using the low static pressure-loadable two-chamber system, and examined cell growth, cell cycle, and cell morphology. Madin-Darby canine kidney (MDCK) columnar epithelial cells were growth-suppressed in a manner dependent on static water pressure ranging from 2 to 50 cm HO, without cell cycle arrest at any specific phase. Two other types of columnar epithelial cells exhibited similar phenotypes. By contrast, spherical epithelial and mesenchymal cells were not growth-suppressed, even at 50 cm HO. Phalloidin staining revealed that 50 cm HO pressure load vertically flattened and laterally widened columnar epithelial cells and made actin fiber distribution sparse, without affecting total phalloidin intensity per cell. When the mucosal protectant irsogladine maleate (100 nM) was added to 50-cm-high culture medium, MDCK cells were reduced in volume and their doubling time shortened. Cell proliferation and morphology are known to be regulated by the Hippo signaling pathway. A pressure load of 50 cm HO enhanced serine-127 phosphorylation and cytoplasmic retention of YAP, the major constituent of this pathway, suggesting that Hippo pathway was involved in the pressure-induced cell growth suppression. RNA sequencing of MDCK cells showed that a 50 cm HO pressure load upregulated , an intermediate filament, 12-fold. This upregulation was confirmed at the protein level by immunofluorescence, suggesting a role in cytoskeletal reinforcement. These results provide evidence that cell morphology and the cytoskeleton are closely linked to cell growth. Pathological intraluminal pressure elevation may cause mucosal degeneration by acting directly on this linkage and the Hippo pathway.

摘要

管腔内压力升高可导致诸如肠梗阻和肾积水等退行性疾病,且阈值相当低且恒定,为20 - 30 cm H₂O。我们之前设计了一种新型双室培养系统,使培养在半透膜上的细胞承受增加的培养基高度(水压高达60 cm H₂O)。在此,我们试图确定约30 cm H₂O的持续压力负荷如何影响增殖的上皮细胞,特别关注其与细胞形态的联系。我们使用低静态压力可加载双室系统培养了几种不同的细胞系,并检测了细胞生长、细胞周期和细胞形态。麦氏犬肾(MDCK)柱状上皮细胞的生长受到抑制,其方式取决于2至50 cm H₂O的静态水压,且在任何特定阶段均无细胞周期停滞。另外两种类型的柱状上皮细胞表现出相似的表型。相比之下,球形上皮细胞和间充质细胞即使在50 cm H₂O时也未受到生长抑制。鬼笔环肽染色显示,50 cm H₂O的压力负荷使柱状上皮细胞垂直变扁且横向变宽,并使肌动蛋白纤维分布稀疏,而不影响每个细胞的总鬼笔环肽强度。当将黏膜保护剂马来酸伊索拉定(100 nM)添加到50 cm高的培养基中时,MDCK细胞体积减小且倍增时间缩短。已知细胞增殖和形态受Hippo信号通路调控。50 cm H₂O的压力负荷增强了该通路主要成分YAP的丝氨酸 - 127磷酸化及细胞质滞留,表明Hippo通路参与了压力诱导的细胞生长抑制。MDCK细胞的RNA测序显示,50 cm H₂O的压力负荷使一种中间丝上调了12倍。通过免疫荧光在蛋白质水平证实了这种上调,表明其在细胞骨架强化中发挥作用。这些结果提供了证据,证明细胞形态和细胞骨架与细胞生长密切相关。病理性管腔内压力升高可能通过直接作用于这种联系和Hippo通路而导致黏膜退变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de19/5723396/f19d7612531d/fphys-08-00997-g0001.jpg

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