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Updated: Sep 13, 2025

Xenopus laevis as a Model to Identify Translation Impairment
Published on: September 27, 2015
Altered translation elongation contributes to key hallmarks of aging in the killifish brain
Domenico Di Fraia1, Antonio Marino1, Jae Ho Lee2
1Leibniz Institute on Aging-Fritz Lipmann Institute (FLI), Jena, Germany.
Abstract:
Aging is a major risk factor for neurodegeneration and is characterized by diverse cellular and molecular hallmarks. To understand the origin of these hallmarks, we studied the effects of aging on the transcriptome, translatome, and proteome in the brain of short-lived killifish. We identified a cascade of events in which aberrant translation pausing led to altered abundance of proteins independently of transcriptional regulation. In particular, aging caused increased ribosome stalling and widespread depletion of proteins enriched in basic amino acids. These findings uncover a potential vulnerable point in the aging brain's biology-the biogenesis of basic DNA and RNA binding proteins. This vulnerability may represent a unifying principle that connects various aging hallmarks, encompassing genome integrity, proteostasis, and the biosynthesis of macromolecules.
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