4.7 Article

The E1 ubiquitin-activating enzyme Uba1 in Drosophila controls apoptosis autonomously and tissue growth nonautonomously

Journal

DEVELOPMENT
Volume 135, Issue 1, Pages 43-52

Publisher

COMPANY BIOLOGISTS LTD
DOI: 10.1242/dev.011288

Keywords

Uba1; E1; ubiquitin-activating enzyme; apoptosis; proliferation; Drosophila; autonomous control; non autonomous

Funding

  1. NATIONAL CANCER INSTITUTE [P30CA016672] Funding Source: NIH RePORTER
  2. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [R01GM068016] Funding Source: NIH RePORTER
  3. NCI NIH HHS [CA16672, P30 CA016672] Funding Source: Medline
  4. NIGMS NIH HHS [R01 GM068016-04, R01 GM068016-05, R01 GM068016, R01 GM068016-01A1, R01 GM068016-02, R01 GM068016-03] Funding Source: Medline

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Ubiquitination is an essential process regulating turnover of proteins for basic cellular processes such as the cell cycle and cell death (apoptosis). Ubiquitination is initiated by ubiquitin-activating enzymes (E1), which activate and transfer ubiquitin to ubiquitin-conjugating enzymes (E2). Conjugation of target proteins with ubiquitin is then mediated by ubiquitin ligases (E3). Ubiquitination has been well characterized using mammalian cell lines and yeast genetics. However, the consequences of partial or complete loss of ubiquitin conjugation in a multi-cellular organism are not well understood. Here, we report the characterization of Uba1, the only E1 in Drosophila. We found that weak and strong Uba1 alleles behave genetically differently with sometimes opposing phenotypes. Whereas weak Uba1 alleles protect cells from cell death, clones of strong Uba1 alleles are highly apoptotic. Strong Uba1 alleles cause cell cycle arrest which correlates with failure to reduce cyclin levels. Surprisingly, clones of strong Uba1 mutants stimulate neighboring wild-type tissue to undergo cell division in a non-autonomous manner giving rise to overgrowth phenotypes of the mosaic fly. We demonstrate that the non-autonomous overgrowth is caused by failure to downregulate Notch signaling in Uba1 mutant clones. In summary, the phenotypic analysis of Uba1 demonstrates that impaired ubiquitin conjugation has significant consequences for the organism, and may implicate Uba1 as a tumor suppressor gene.

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