类有机物
癌症研究
细胞
细胞粘附
疾病
病理
癌细胞
医学
粘附
癌症
生物
化学
细胞生物学
内科学
遗传学
有机化学
作者
Yin Tong,Priscilla S.W. Cheng,Chung Sze Or,Sarah S K Yue,Hoi Cheong Siu,Siu Lun Ho,Simon Law,Wai Yin Tsui,Dessy Chan,Stephanie Ma,Siu Po Lee,Annie S Y Chan,April Chan,Shui Wa Yun,Ho Sang Hui,Siu Tsan Yuen,Suet Yi Leung,Helen H.N. Yan
出处
期刊:Gut
[BMJ]
日期:2022-06-15
卷期号:72 (2): 242-255
被引量:8
标识
DOI:10.1136/gutjnl-2022-327121
摘要
Objective Cell-cell (CC) and cell-matrix (CM) adhesions are essential for epithelial cell survival, yet dissociation-induced apoptosis is frequently circumvented in malignant cells. Design We explored CC and CM dependence in 58 gastric cancer (GC) organoids by withdrawing either ROCK inhibitor, matrix or both to evaluate their tumorigenic potential in terms of apoptosis resistance, correlation with oncogenic driver mutations and clinical behaviour. We performed mechanistic studies to determine the role of diffuse-type GC drivers: ARHGAP fusions, RHOA and CDH1, in modulating CC (CCi) or CM (CMi) adhesion independence. Results 97% of the tumour organoids were CMi, 66% were CCi and 52% were resistant to double withdrawal (CCi/CMi), while normal organoids were neither CMi nor CCi. Clinically, the CCi/CMi phenotype was associated with an infiltrative tumour edge and advanced tumour stage. Moreover, the CCi/CMi transcriptome signature was associated with poor patient survival when applied to three public GC datasets. CCi/CMi and CCi phenotypes were enriched in diffuse-type GC organoids, especially in those with oncogenic driver perturbation of RHO signalling via RHOA mutation or ARHGAP fusions. Inducible knockout of ARHGAP fusions in CCi/CMi tumour organoids led to resensitisation to CC/CM dissociation-induced apoptosis, upregulation of focal adhesion and tight junction genes, partial reversion to a more normal cystic phenotype and inhibited xenograft formation. Normal gastric organoids engineered with CDH1 or RHOA mutations became CMi or CCi, respectively. Conclusions The CCi/CMi phenotype has a critical role in malignant transformation and tumour progression, offering new mechanistic information on RHO-ROCK pathway inhibition that contributes to GC pathogenicity.
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