Targeting ROCK1/YAP1 Axis Ameliorates Inflammation-Induced Prostatic Hyperplasia via Stabilising SIRT1-Dependent Mitochondrial Dynamics.

IF 5.6 1区 生物学 Q2 CELL BIOLOGY
Dongxu Lin, Pengyu Wei, Mengyang Zhang, Kang Li, Lina Li, Zhipeng Li, Changcheng Luo, Wenbo Kuang, Kai Cui, Zhong Chen
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Abstract

Benign prostatic hyperplasia (BPH) is a common condition in older men, with its prevalence increasing as age advances. Chronic inflammation orchestrates oxidative stress to exacerbate BPH. YAP1, which regulates organ size, cellular homeostasis, and tissue fibrosis, can be activated by ROCK1. Given the urgent clinical need for more effective therapies, this study explored whether targeting the ROCK1/YAP1 axis could mitigate BPH progression. Here, rats received in situ adeno-associated virus (AAV) injection to induce prostate-specific YAP1 overexpression. An inflammation-associated experimental autoimmune prostatitis (EAP) model was established by prostate antigen immunisation, followed by treatment with ROCK1 inhibitor fasudil and YAP1 inhibitor verteporfin. Cell models were treated with specific inhibitors to confirm the critical role of YAP1 in modulating mitochondrial function. As a result, YAP1 overexpression was sufficient to induce a pathological BPH phenotype. Specifically, YAP1 activated the inflammatory cascade to provoke an immune response, disrupted proliferation/apoptosis balance to induce tissue hyperplasia, triggered epithelial-mesenchymal transition (EMT) and reactive stroma to drive fibrosis, and promoted NOX4/ROS generation and antioxidant depletion to cause oxidative stress. The inflammation-induced experimental autoimmune prostatitis (EAP) model also presented analogous BPH lesions, which were significantly alleviated when treated with ROCK1 inhibitor fasudil and YAP1 inhibitor verteporfin. Mechanistically, YAP1 activation under inflammatory conditions suppressed SIRT1 expression, thereby exacerbating oxidative stress through the disruption of DRP1/MFN2-mediated mitochondrial dynamics. Overall, inflammation-driven activation of the ROCK1/YAP1 axis aggravates oxidative stress, promoting BPH hyperplasia and fibrosis by impairing SIRT1-regulated mitochondrial dynamics. These findings provide a preclinical rationale for developing ROCK1 or YAP1 inhibitors as targeted therapies for BPH patients with chronic inflammation.

靶向ROCK1/YAP1轴通过稳定sirt1依赖的线粒体动力学改善炎症性前列腺增生
良性前列腺增生(BPH)是老年男性的常见病,其患病率随着年龄的增长而增加。慢性炎症协调氧化应激,使BPH恶化。调控器官大小、细胞稳态和组织纤维化的YAP1可被ROCK1激活。鉴于临床迫切需要更有效的治疗方法,本研究探讨了靶向ROCK1/YAP1轴是否可以减缓BPH的进展。在这里,大鼠接受原位腺相关病毒(AAV)注射以诱导前列腺特异性YAP1过表达。通过前列腺抗原免疫建立炎症相关的实验性自身免疫性前列腺炎(EAP)模型,然后用ROCK1抑制剂法舒地尔和YAP1抑制剂维替波芬治疗。用特异性抑制剂处理细胞模型,以确认YAP1在调节线粒体功能中的关键作用。因此,YAP1过表达足以诱导病理性BPH表型。具体来说,YAP1激活炎症级联引发免疫反应,破坏增殖/凋亡平衡诱导组织增生,触发上皮-间质转化(EMT)和反应性基质驱动纤维化,促进NOX4/ROS生成和抗氧化剂消耗导致氧化应激。炎症诱导的实验性自身免疫性前列腺炎(EAP)模型也出现类似的BPH病变,使用ROCK1抑制剂法舒地尔和YAP1抑制剂维替波芬治疗后,BPH病变明显减轻。在机制上,炎症条件下YAP1的激活抑制了SIRT1的表达,从而通过破坏DRP1/ mfn2介导的线粒体动力学加剧了氧化应激。总的来说,炎症驱动的ROCK1/YAP1轴激活会加重氧化应激,通过损害sirt1调节的线粒体动力学来促进BPH增生和纤维化。这些发现为开发ROCK1或YAP1抑制剂作为BPH慢性炎症患者的靶向治疗提供了临床前理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cell Proliferation
Cell Proliferation 生物-细胞生物学
CiteScore
14.80
自引率
2.40%
发文量
198
审稿时长
1 months
期刊介绍: Cell Proliferation Focus: Devoted to studies into all aspects of cell proliferation and differentiation. Covers normal and abnormal states. Explores control systems and mechanisms at various levels: inter- and intracellular, molecular, and genetic. Investigates modification by and interactions with chemical and physical agents. Includes mathematical modeling and the development of new techniques. Publication Content: Original research papers Invited review articles Book reviews Letters commenting on previously published papers and/or topics of general interest By organizing the information in this manner, readers can quickly grasp the scope, focus, and publication content of Cell Proliferation.
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