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Production of β-PheRS fragments correlates with food avoidance and slow growth, and is suppressed by the appetite-inducing hormone CCHa2

Brunssen, D.; Suter, B.

2023-01-12 developmental biology
10.1101/2023.01.11.523627 bioRxiv
Show abstract

The housekeeping tRNA synthetases play many non-canonical roles with diverse functions. The phenylalanyl-tRNA synthetase (PheRS/FARS) is an 2{beta}2 tetramere. Recently, human patients with mutations in FARSB, the homolog of {beta}-PheRS in Drosophila, have been reported to display problems gaining weight. Here, we show in Drosophila that overexpressing the {beta} subunit in the context of the complete PheRS leads to larval roaming, food avoidance, slow growth, and a developmental delay that can last several days and even prevents pupation. Narrowing down the tissue involved in this behavioral and developmental effect revealed that expression in CCHa2+ and Pros+ cells induced this phenotype. Simultaneous expression of {beta}-PheRS, -PheRS, and the appetite-inducing CCHa2 peptide rescued these phenotypes, linking this {beta}-PheRS activity to the appetite-controlling pathway. The fragmentation dynamics of the excessive {beta}-PheRS points to a {beta}-PheRS fragment as a likely candidate inducer of these phenotypes. Fragmentation of PheRS (FARS) has also been observed in humans and mutations in human {beta}-PheRS (FARSB) can lead to problems in gaining weight. This study, therefore, points to a potential mechanism for the human phenotype and to possible novel approaches to research ways to correct the balance between hunger and satiety signals in the context of obesity.

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