MAP9 Loss Triggers Chromosomal Instability, Initiates Colorectal Tumorigenesis, and Is Associated with Poor Survival of Patients with Colorectal Cancer

结直肠癌 染色体不稳定性 癌症研究 癌变 癌症 基因剔除小鼠 大肠癌小鼠模型的建立 微卫星不稳定性 基因组不稳定性 生物 非整倍体 偶氮甲烷 染色体 遗传学 DNA损伤 基因 等位基因 DNA 微卫星
作者
Shiyan Wang,Junzhe Huang,Chuangen Li,Liuyang Zhao,Chi Chun Wong,Jianning Zhai,Yunfei Zhou,Wen Deng,Yong Zeng,Shanshan Gao,Yanquan Zhang,Guoping Wang,Xin–Yuan Guan,Hong Wei,Sunny H. Wong,Housheng Hansen He,Jerry W. Shay,Jun Yu
出处
期刊:Clinical Cancer Research [American Association for Cancer Research]
卷期号:26 (3): 746-757 被引量:15
标识
DOI:10.1158/1078-0432.ccr-19-1611
摘要

Chromosomal instability (CIN) is a common phenomenon in colorectal cancer, but its role and underlying cause remain unknown. We have identified that mitotic regulator microtubule-associated protein 9 (MAP9) is a critical regulator of CIN in colorectal cancer. We thus studied the effect of MAP9 loss on colorectal cancer in Map9-knockout mice and in cell lines.We generated colon epithelial-specific Map9-knockout mice and evaluated colorectal cancer development. Effect of Map9 knockout on colorectal cancer progression was determined in chemical or ApcMin/+ -induced colorectal cancer. Molecular mechanism of MAP9 was determined using spectral karyotyping, microtubule assays, and whole-genome sequencing (WGS). Clinical significance of MAP9 was examined in 141 patients with CRC.Spontaneous colonic tumors (9.1%) were developed in colon epithelium-specific Map9-knockout mice at 17 months, but none was observed in wild-type littermates. Map9 deletion accelerated colorectal cancer formation both in ApcMin/+ mice and azoxymethane-treated mice, and reduced survival in ApcMin/+ mice. Mechanistically, MAP9 stabilized microtubules and mediated mitotic spindle assembly. MAP9 also maintained the spindle pole integrity and protected K-fiber from depolymerization at spindle poles. MAP9 loss induced severe mitosis failure, chromosome segregation errors, and aneuploidy, leading to transformation of normal colon epithelial cells. WGS confirmed enhanced CIN in intestinal tumors from Map9 knockout ApcMin/+ mice. In patients with colorectal cancer, MAP9 was frequently silenced and its downregulation was associated with poor survival.MAP9 is a microtubule stabilizer that contributes to spindle stability and inhibits colorectal tumorigenesis, supporting the role of MAP9 as a tumor suppressor for preventing CIN in colorectal cancer.
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