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Rapalink-1 reveals novel mTOR-dependent genes and an agmatinergic axis-based metabolic feedback regulating mTOR activity and lifespan

2024-07-22

Abstract excerpt

The mechanistic Target of Rapamycin, mTOR, is a conserved pro-ageing pathway with characterised inhibitors such as rapamycin, rapalogues and torins. Bi-steric third-generation inhibitors, such as rapalink-1 have been developed, however, their effects on organismal gene expression and lifespan have not been characterised. Here, we demonstrate that rapalink-1 affects fission yeast spatial and temporal growth and pro...

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Literature Corpus work
a61a6ded-1781-58e0-8951-50a0a4fd590c
DOI
10.1101/2024.07.20.604404
Open publication

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Rapalink-1 reveals novel mTOR-dependent genes and an agmatinergic axis-based metabolic feedback regulating mTOR activity and lifespanDOI 10.1101/2024.07.20.604404
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