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Updated: Jun 3, 2026

Single Drosophila Ommatidium Dissection and Imaging
Published on: August 19, 2011
Ubiquitin over-expression phenotypes and ubiquitin gene molecular misreading during aging in Drosophila melanogaster
Nicholas Hoe1, Chung M Huang, Gary Landis
1Molecular and Computational Biology Program, Department of Biological Sciences, University of Southern California, Los Angeles, 90089‐2910, USA.
Abstract:
Molecular Misreading (MM) is the inaccurate conversion of genomic information into aberrant proteins. For example, when RNA polymerase II transcribes a GAGAG motif it synthesizes at low frequency RNA with a two-base deletion. If the deletion occurs in a coding region, translation will result in production of misframed proteins. During mammalian aging, misframed versions of human amyloid precursor protein (hApp) and ubiquitin (hUbb) accumulate in the aggregates characteristic of neurodegenerative diseases, suggesting dysfunctional degradation or clearance. Here cDNA clones encoding wild-type hUbb and the frame-shifted version hUbb(+1) were expressed in transgenic Drosophila using the doxycycline-regulated system. Misframed proteins were abundantly produced, both from the transgenes and from endogenous Drosophila ubiquitin-encoding genes, and their abundance increased during aging in whole-fly extracts. Over-expression of wild-type hUbb, but not hUbb(+1), was toxic during fly development. In contrast, when over-expressed specifically in adult flies, hUbb(+1) caused small decreases in life span, whereas hUbb was associated with small increases, preferentially in males. The data suggest that MM occurs in Drosophila and that the resultant misframed proteins accumulate with age. MM of the ubiquitin gene can produce alternative ubiquitin gene products with different and sometimes opposing phenotypic effects.
Insights
Molecular Misreading (MM) creates aberrant proteins, accumulating with age in flies. This study shows MM of the ubiquitin gene produces distinct protein variants with opposing effects on lifespan.
Area of Science:
- Molecular Biology
- Genetics
- Aging Research
Background:
- Molecular Misreading (MM) leads to aberrant protein production from genomic errors.
- Misframed proteins, like those from amyloid precursor protein (hApp) and ubiquitin (hUbb), accumulate during mammalian aging and are linked to neurodegenerative diseases.
Purpose of the Study:
- To investigate the occurrence and consequences of Molecular Misreading in Drosophila.
- To determine the impact of misframed ubiquitin variants on fly lifespan and development.
Main Methods:
- Expression of wild-type and frame-shifted ubiquitin (hUbb(+1)) in transgenic Drosophila using a doxycycline-regulated system.
- Quantification of misframed proteins in aging flies.
- Assessment of phenotypic effects, including developmental toxicity and lifespan changes.
Main Results:
- Misframed ubiquitin proteins were abundantly produced in transgenic flies and increased with age.
- Overexpression of wild-type ubiquitin was toxic during development, while hUbb(+1) showed developmental tolerance.
- Adult hUbb(+1) expression decreased lifespan, whereas wild-type hUbb slightly increased it, particularly in males.
Conclusions:
- Molecular Misreading occurs in Drosophila and results in age-dependent accumulation of misframed proteins.
- MM of the ubiquitin gene can generate alternative protein products with opposing phenotypic effects, influencing lifespan.

