Stiffness promotes cell migration, invasion, and invadopodia in nasopharyngeal carcinoma by regulating the WT‐CTTN level

Author:

Bao Lili123,Zhong Ming4,Zhang Zixiang123,Yu Xiangqing123,You Bo123ORCID,You Yiwen123ORCID,Gu Miao123ORCID,Zhang Qicheng123,Chen Wenhui123,Lei Wei123,Hu Songqun123ORCID

Affiliation:

1. Department of Otorhinolaryngology Head and Neck Surgery Affiliated Hospital of Nantong University Nantong Jiangsu Province China

2. Institute of Otolaryngology Head and Neck Surgery Affiliated Hospital of Nantong University Nantong Jiangsu Province China

3. Medical College of Nantong University Nantong Jiangsu Province China

4. Department of Otorhinolaryngology Head and Neck Surgery The People's Hospital of Rugao Rugao Jiangsu Province China

Abstract

AbstractMatrix stiffness potently promotes the malignant phenotype in various biological contexts. Therefore, identification of gene expression to participate in mechanical force signals transduced into downstream biochemical signaling will contribute substantially to the advances in nasopharyngeal carcinoma (NPC) treatment. In the present study, we detected that cortactin (CTTN) played an indispensable role in matrix stiffness‐induced cell migration, invasion, and invadopodia formation. Advances in cancer research have highlighted that dysregulated alternative splicing contributes to cancer progression as an oncogenic driver. However, whether WT‐CTTN or splice variants (SV1‐CTTN or SV2‐CTTN) regulate matrix stiffness‐induced malignant phenotype is largely unknown. We proved that alteration of WT‐CTTN expression modulated matrix stiffness‐induced cell migration, invasion, and invadopodia formation. Considering that splicing factors might drive cancer progression through positive feedback loops, we analyzed and showed how the splicing factor PTBP2 and TIA1 modulated the production of WT‐CTTN. Moreover, we determined that high stiffness activated PTBP2 expression. Taken together, our findings showed that the PTBP2‐WT‐CTTN level increases upon stiffening and then promotes cell migration, invasion, and invadopodia formation in NPC.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province

Beijing Xisike Clinical Oncology Research Foundation

Publisher

Wiley

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Mechanotransduction Circuits in Human Pathobiology;International Journal of Molecular Sciences;2024-03-29

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