Department of Life Science, Chung-Ang University, Seoul, Republic of Korea.
Bio Imaging and Cell Logistics Research Center, School of Life Sciences, Gwangju Institute of Science and Technology, Gwangju, Republic of Korea.
Cancer Res. 2017 Sep 1;77(17):4710-4722. doi: 10.1158/0008-5472.CAN-17-0657. Epub 2017 Jun 26.
Biomechanical remodeling of stroma by cancer-associated fibroblasts (CAF) in early stages of cancer is critical for cancer progression, and mechanical cues such as extracellular matrix stiffness control cell differentiation and malignant progression. However, the mechanism by which CAF activation occurs in low stiffness stroma in early stages of cancer is unclear. Here, we investigated the molecular mechanism underlying CAF regulation by SPIN90 and microtubule acetylation under conditions of mechanically soft matrices corresponding to normal stromal rigidity. SPIN90 was downregulated in breast cancer stroma but not tumor, and this low stromal expression correlated with decreased survival in breast cancer patients. deficiency facilitated recruitment of mDia2 and APC complex to microtubules, resulting in increased microtubule acetylation. This increased acetylation promoted nuclear localization of YAP, which upregulated expression of myofibroblast marker genes on soft matrices. depletion enhanced tumor progression, and blockade of microtubule acetylation in CAF significantly inhibited tumor growth in mice. Together, our data demonstrate that loss of SPIN90-mediated microtubule acetylation is a key step in CAF activation in low stiffness stroma. Moreover, correlation among these factors in human breast cancer tissue supports the clinical relevance of SPIN90 and microtubule acetylation in tumor development. .
肿瘤相关成纤维细胞(CAF)在癌症早期对基质的生物力学重塑对于癌症的进展至关重要,细胞分化和恶性进展受到细胞外基质硬度等力学线索的控制。然而,在癌症早期低硬度基质中 CAF 激活的机制尚不清楚。在这里,我们研究了 SPIN90 和微管乙酰化在对应于正常基质刚性的机械软基质条件下调节 CAF 的分子机制。在乳腺癌基质中,但不在肿瘤中,下调 SPIN90,并且这种低基质表达与乳腺癌患者的生存率降低相关。缺乏 SPIN90 促进了 mDia2 和 APC 复合物向微管的募集,导致微管乙酰化增加。这种增加的乙酰化促进了 YAP 的核定位,从而上调了在软基质上的成肌纤维细胞标记基因的表达。 耗竭增强了肿瘤的进展,并且在 CAF 中阻断微管乙酰化显著抑制了小鼠的肿瘤生长。总之,我们的数据表明,SPIN90 介导的微管乙酰化的丧失是低硬度基质中 CAF 激活的关键步骤。此外,这些因素在人类乳腺癌组织中的相关性支持 SPIN90 和微管乙酰化在肿瘤发展中的临床相关性。