PO.TB10.12 · 肿瘤生物学
基质硬度编码的机械记忆维持肿瘤转移中的增殖优势
Matrix stiffness encoded mechanical memory maintains proliferative dominance in tumor metastasis
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
临床观察发现,全身治疗期间新发肺转移灶的进展反映了原发病灶的耐药性,提示转移灶可能保留了与原发肿瘤相似的生物学特征。然而,处于不同微环境中的肺转移灶肿瘤细胞如何保留原发肿瘤的生物学特征尚不清楚。我们报道机械记忆使肿瘤细胞得以抵抗生物力学应力并维持恶性特性。坚硬基质激活RhoA-ROCK1信号通路,导致肌动蛋白细胞骨架重塑及线粒体分裂受抑。这种线粒体动力学失调增强了脂肪酸β氧化,使acetyl-CoA蓄积并随后引起组蛋白过度乙酰化。这种表观遗传重编程可经有丝分裂遗传,使子代细胞在脱离坚硬环境后仍保留增殖优势。抑制RhoA-ROCK1可破坏机械记忆,减少HCC肺转移。我们的研究结果提出以机械记忆为靶点作为一种新的转移预防策略。
查看英文原文 English abstract
Clinical observations revealed that the progression of newly developed pulmonary metastasis during systemic therapy reflected resistance in primary lesions and suggested that metastatic foci may retain biological characteristics similar to those of the primary tumor. However, how tumor cells in pulmonary metastatic lesions retained the biological characteristics of the primary tumor in different microenvironments remained unclear. We reported that mechanical memory enabled tumor cells to resist biomechanical stress and sustain malignant traits. Stiff matrix activated the RhoA-ROCK1 signaling pathway, leading to actin cytoskeletal remodeling and the suppression of mitochondrial fission. This dysregulation of mitochondrial dynamics enhanced fatty acid beta-oxidation, accumulating acetyl-CoA and subsequent histone hyperacetylation. This epigenetic reprogramming was mitotically heritable, allowing progeny cells to retain a proliferative advantage after detachment from stiff environments. Inhibiting RhoA-ROCK1 disrupted mechanical memory, reducing HCC pulmonary metastasis. Our findings proposed targeting mechanical memory as a novel metastasis prevention strategy.
利益披露 Disclosure
Y. Luo, None..
Y. Pan, None..
X. Lin, None..
S. Fang, None.