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Alami, A.

Publications and source records attributed to Alami, A..

2 recordsLinked to original sources

Drosophila storage proteins promote both the rate and the duration of tumor growth

Amino acid storage proteins, such as serum albumin in mammals, are known to accumulate within tumors, but their precise contribution to tumor biology remains unclear. Using both cachectic and non-cachectic tumor models in Drosophila, we observed that fat body-derived hexamerins accumulate in the tumors through a selective uptake process. Disabling this uptake led to a marked reduction in tumor growth, demonstrating that hexamerins are used as a nutrient source to support cancer progression. Hexamerin uptake also supports expression of the relaxin-like Dilp8 by the tumor, inhibiting ecdysone production and extending the growth period. This coupling between nutrient uptake by the tumor and inhibition of the developmental progression exerts a full diversion of the host resources. Functional parallels with mammalian albumins suggest evolutionarily conserved mechanisms with potential implications for cancer biology.

cancer biology↗

A temporal allocation of amino acid resources ensures fitness and body allometry

Organisms have evolved strategies to store resources and overcome periods of low or no nutrient access including transient shortages or longer non-feeding developmental transitions. Holometabolous insects like Drosophila represent an attractive model to study resource allocation during development since they alternate feeding and non-feeding periods. Amino acids are essential components for tissue growth and renewal, but the strategies used for their storage remain largely unexplored. Here, we uncover a 2-step mechanism for the temporal production, storage and use of specific storage proteins called hexamerins. Moreover, we show that modulating amino acid storage affects the relative growth of organs across developmental phases and, as a consequence, alters body allometry and adult fitness.

developmental biology↗