Department of Cell Systems & Anatomy, UT Health San Antonio, San Antonio, Texas, United States of America.
Department of Pathology, UT Health San Antonio, San Antonio, Texas, United States of America.
PLoS Biol. 2019 Sep 12;17(9):e3000418. doi: 10.1371/journal.pbio.3000418. eCollection 2019 Sep.
Damaged acinar cells play a passive role in activating pancreatic stellate cells (PSCs) via recruitment of immune cells that subsequently activate PSCs. However, whether acinar cells directly contribute to PSC activation is unknown. Here, we report that the Hippo pathway, a well-known regulator of proliferation, is essential for suppression of expression of inflammation and fibrosis-associated genes in adult pancreatic acinar cells. Hippo inactivation in acinar cells induced yes-associated protein 1 (YAP1)/transcriptional coactivator with PDZ binding motif (TAZ)-dependent, irreversible fibrosis and inflammation, which was initiated by Hippo-mediated acinar-stromal communications and ameliorated by blocking YAP1/TAZ target connective tissue growth factor (CTGF). Hippo disruption promotes acinar cells to secrete fibroinflammatory factors and induce stromal activation, which precedes acinar proliferation and metaplasia. We found that Hippo disruption did not induce cell-autonomous proliferation but primed acinar cells to exogenous pro-proliferative stimuli, implying a well-orchestrated scenario in which Hippo signaling acts as an intrinsic link to coordinate fibroinflammatory response and proliferation for maintenance of the tissue integrity. Our findings suggest that the fibroinflammatory program in pancreatic acinar cells is suppressed under normal physiological conditions. While transient activation of inflammatory gene expression during tissue injury may contribute to the control of damage and tissue repair, its persistent activation may result in tissue fibrosis and failure of regeneration.
受损的腺泡细胞通过招募免疫细胞在激活胰腺星状细胞 (PSC) 方面发挥被动作用,随后这些免疫细胞会激活 PSC。然而,腺泡细胞是否直接促进 PSC 的激活尚不清楚。在这里,我们报告 Hippo 通路(一种已知的增殖调节剂)对于抑制成年胰腺腺泡细胞中炎症和纤维化相关基因的表达是必不可少的。腺泡细胞中 Hippo 的失活诱导了 YAP1/PDZ 结合基序转录共激活因子 (TAZ) 依赖性、不可逆的纤维化和炎症,这是由 Hippo 介导的腺泡-基质通讯启动的,并通过阻断 YAP1/TAZ 靶连接组织生长因子 (CTGF) 得到改善。Hippo 破坏促进了腺泡细胞分泌纤维炎性因子并诱导基质激活,这先于腺泡细胞增殖和化生。我们发现 Hippo 破坏并没有诱导细胞自主增殖,但使腺泡细胞对外部促有丝分裂刺激产生反应,这意味着 Hippo 信号在协调纤维炎症反应和增殖以维持组织完整性方面起着内在的作用。我们的发现表明,在正常生理条件下,胰腺腺泡细胞中的纤维炎症程序受到抑制。虽然组织损伤期间炎症基因表达的短暂激活可能有助于控制损伤和组织修复,但持续激活可能导致组织纤维化和再生失败。