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Updated: Jan 23, 2026

The Microscopy-Based Assay to Study and Analyze the Recycling Endosomes using SNARE Trafficking
Published on: February 12, 2022
Recycling Endosomes in Mature Epithelia Restrain Tumorigenic Signaling
Luca D'Agostino1, Yingchao Nie2, Sayantani Goswami1
1Department of Biological Sciences, Rutgers University, Newark, New Jersey.
Abstract:
The effects of polarized membrane trafficking in mature epithelial tissue on cell growth and cancer progression have not been fully explored in vivo. 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.
Insights
Recycling endosomes, regulated by Rab11 protein, suppress abnormal cell growth and cancer progression. Loss of this function accelerates tumor development by activating cancer-promoting pathways.
Area of Science:
- Cell Biology
- Molecular Biology
- Oncology
Background:
- Polarized membrane trafficking's role in epithelial tissue, cell growth, and cancer is understudied.
- Reduced and mislocalized Rab11 (a GTPase for recycling endosomes) is common in colorectal cancers, correlating with poor patient survival.
- Rab11 protein levels are linked to patient outcomes.
Purpose of the Study:
- To investigate the in vivo effects of polarized membrane trafficking on epithelial cell growth and cancer.
- To determine the role of Rab11-mediated recycling endosomes in restraining aberrant epithelial growth and tumor progression.
Main Methods:
- Utilized genetic models across species to study recycling endosome function.
- Performed transcriptomic analysis to identify molecular pathways affected by Rab11 disruption.
- Examined Rab11a function in enteroids and cultured cell lines.
Main Results:
- Intact recycling endosomes restrain aberrant epithelial growth caused by APC or RAS mutations.
- Loss of Rab11 protein causes epithelial dysplasia and accelerates tumor progression.
- Rab11a disruption leads to stem cell expansion and Yki/Yap activation, promoting tumor signaling pathways.
Conclusions:
- Recycling endosomes act as crucial tumor suppressors in mature epithelia.
- Loss of recycling endosome function accelerates carcinogenesis by activating oncogenic pathways like Yap.
- Disruption of Rab11a-mediated recycling impairs Hippo kinase suppression of the Yap pathway.
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