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成熟上皮细胞中的内体再循环抑制致癌信号。

Recycling Endosomes in Mature Epithelia Restrain Tumorigenic Signaling.

机构信息

Department of Biological Sciences, Rutgers University, Newark, New Jersey.

Program in Molecular Medicine, University of Massachusetts Medical School, Worcester, Massachusetts.

出版信息

Cancer Res. 2019 Aug 15;79(16):4099-4112. doi: 10.1158/0008-5472.CAN-18-4075. Epub 2019 Jun 25.

Abstract

The effects of polarized membrane trafficking in mature epithelial tissue on cell growth and cancer progression have not been fully explored . A majority of colorectal cancers have reduced and mislocalized Rab11, a small GTPase dedicated to trafficking of recycling endosomes. Patients with low Rab11 protein expression have poor survival rates. Using genetic models across species, we show that intact recycling endosome function restrains aberrant epithelial growth elicited by APC or RAS mutations. Loss of Rab11 protein led to epithelial dysplasia in early animal development and synergized with oncogenic pathways to accelerate tumor progression initiated by carcinogen, genetic mutation, or aging. Transcriptomic analysis uncovered an immediate expansion of the intestinal stem cell pool along with cell-autonomous Yki/Yap activation following disruption of Rab11a-mediated recycling endosomes. Intestinal tumors lacking Rab11a traffic exhibited marked elevation of nuclear Yap, upd3/IL6-Stat3, and amphiregulin-MAPK signaling, whereas suppression of Yki/Yap or upd3/IL6 reduced gut epithelial dysplasia and hyperplasia. Examination of Rab11a function in enteroids or cultured cell lines suggested that this endosome unit is required for suppression of the Yap pathway by Hippo kinases. Thus, recycling endosomes in mature epithelia constitute key tumor suppressors, loss of which accelerates carcinogenesis. SIGNIFICANCE: Recycling endosome traffic in mature epithelia constitutes a novel tumor suppressing mechanism.

摘要

极化膜运输在成熟上皮组织中的作用对细胞生长和癌症进展的影响尚未得到充分探索。大多数结直肠癌中,Rab11 减少且定位异常,Rab11 是一种专门负责循环内体运输的小 GTPase。Rab11 蛋白表达水平低的患者存活率较差。通过跨物种的遗传模型,我们表明完整的循环内体功能可抑制 APC 或 RAS 突变引起的异常上皮生长。Rab11 蛋白的缺失导致早期动物发育中的上皮发育不良,并与致癌途径协同作用,加速致癌剂、基因突变或衰老引发的肿瘤进展。转录组分析显示,在破坏 Rab11a 介导的循环内体后,肠干细胞池立即扩张,同时细胞自主的 Yki/Yap 激活。缺乏 Rab11a 的肠道肿瘤表现出核 Yap、upd3/IL6-Stat3 和 Amphiregulin-MAPK 信号的显著升高,而抑制 Yki/Yap 或 upd3/IL6 可减少肠道上皮发育不良和增生。在肠类器官或培养的细胞系中检查 Rab11a 的功能表明,该内体单位是 Hippo 激酶抑制 yap 通路所必需的。因此,成熟上皮中的循环内体构成了一种新的肿瘤抑制机制。

意义

成熟上皮中的循环内体运输构成了一种新的肿瘤抑制机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c20/6726494/4781feeb9061/nihms-1532273-f0001.jpg

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