ESCRT-0 is not required for ectopic Notch activation and tumor suppression in Drosophila

Emiliana Tognon1, Nadine Wollscheid1, Katia Cortese2

  • 1IFOM, Istituto FIRC di Oncologia Molecolare @ IFOM-IEO Campus, Milano, Italy.

Plos One
|April 11, 2014
PubMed

Insights

The Endosomal Sorting Complex Required for Transport (ESCRT)-0 complex, including Hrs and Stam proteins, is not crucial for tumor suppression in Drosophila. Loss of ESCRT-0 components leads to receptor accumulation but does not affect cell polarity or proliferation.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Cancer Research

Background:

  • Multivesicular endosome (MVE) sorting relies on ESCRT proteins for cargo delivery.
  • ESCRT-I, -II, and -III are essential for sorting signaling receptors and maintaining cell polarity in Drosophila epithelia.
  • Previous studies suggested ESCRT proteins act as tumor suppressors, but the role of ESCRT-0 was unclear.

Purpose of the Study:

  • To investigate the role of the ESCRT-0 complex in tumor suppression and signaling receptor sorting.
  • To determine if ESCRT-0 function is linked to the tumor suppressive roles of other ESCRT complexes.

Main Methods:

  • Generated Drosophila epithelia lacking ESCRT-0 components (Hrs and Stam).
  • Analyzed MVEs for accumulation of signaling receptors (Notch and Domeless).
  • Assessed cell polarity, proliferation, and Notch signaling activation in mutant tissues.

Main Results:

  • Loss of Stam or both Hrs and Stam in Drosophila epithelia caused Notch and Domeless receptor accumulation in endosomes.
  • Mutant tissues maintained normal apico-basal polarity and proliferation control.
  • Ectopic Notch signaling activation was not observed in ESCRT-0 deficient cells, unlike in ESCRT-I, -II, -III deficient cells.

Conclusions:

  • The ESCRT-0 complex is dispensable for tumor suppression in Drosophila epithelia.
  • Signaling receptor accumulation in endosomes due to ESCRT-0 loss does not inherently lead to tumorigenesis.
  • The relationship between endosomal signaling modulation and tumorigenesis requires re-evaluation.