Radoslavova Silviya, Fels Benedikt, Pethö Zoltan, Gruner Matthias, Ruck Tobias, Meuth Sven G, Folcher Antoine, Prevarskaya Natalia, Schwab Albrecht, Ouadid-Ahidouch Halima
Laboratory of Cellular and Molecular Physiology, UR-UPJV 4667, University of Picardie Jules Verne, 80039 Amiens, France; University of Lille, Inserm U1003 - PHYCEL - Cellular Physiology, F-59000 Lille, France.
Institute of Physiology, University Lübeck, Lübeck, Germany; DZHK (German Research Centre for Cardiovascular Research), Partner Site Hamburg/Lübeck/Kiel, Lübeck, Germany.
Cell Calcium. 2022 Sep;106:102621. doi: 10.1016/j.ceca.2022.102621. Epub 2022 Jul 9.
Pancreatic stellate cell (PSC) activation is a major event occurring during pancreatic ductal adenocarcinoma (PDAC) development. Up to now mechanisms underlying their activation by mechanical cues such as the elevated tissue pressure in PDAC remain poorly understood. Here we investigate the role of one potential mechano-transducer, TRPC1 ion channel, in PSC activation. Using pre-activated human siTRPC1 and murine TRPC1-KO PSCs, we show that TRPC1 promotes αSMA (α-smooth muscle actin) expression, the main activation marker, in cooperation with the phosphorylated SMAD2, under normal and elevated pressure. Functional studies following TRPC1 silencing demonstrate the dual role of TRPC1 in the modulation of PSC proliferation and IL-6 secretion through the activation of ERK1/2 and SMAD2 pathways. Moreover, pressurization changes the mechanical behavior of PSCs by increasing their cellular stiffness and emitted traction forces in a TRPC1-dependent manner. In summary, these results point to a role of TRPC1 channels in sensing and transducing the characteristic mechanical properties of the PDAC microenvironment in PSCs.
胰腺星状细胞(PSC)激活是胰腺导管腺癌(PDAC)发展过程中的一个主要事件。到目前为止,诸如PDAC中组织压力升高之类的机械信号激活这些细胞的潜在机制仍知之甚少。在此,我们研究一种潜在的机械转导分子——瞬时受体电位通道蛋白1(TRPC1)离子通道在PSC激活中的作用。使用预先激活的人源siTRPC1和鼠源TRPC1基因敲除(KO)的PSC,我们发现,在正常压力和压力升高的情况下,TRPC1与磷酸化SMAD2协同促进主要激活标志物α平滑肌肌动蛋白(αSMA)的表达。TRPC1沉默后的功能研究表明,TRPC1通过激活细胞外信号调节激酶1/2(ERK1/2)和SMAD2信号通路,在PSC增殖和白细胞介素6(IL-6)分泌的调节中具有双重作用。此外,加压通过以TRPC1依赖的方式增加细胞硬度和产生的牵引力来改变PSC的力学行为。总之,这些结果表明TRPC1通道在感知和转导PDAC微环境在PSC中的特征性力学特性方面发挥作用。