De novoemergence of adaptive membrane proteins from thymine-rich intergenic sequences

Author:

Vakirlis Nikolaos,Acar Omer,Hsu Brian,Coelho Nelson Castilho,Van Oss S. Branden,Wacholder Aaron,Medetgul-Ernar Kate,Iannotta John,McLysaght Aoife,Camacho Carlos J.,O’Donnell Allyson F.,Ideker Trey,Carvunis Anne-RuxandraORCID

Abstract

SummaryRecent evidence demonstrates that novel protein-coding genes can arisede novofrom intergenic loci. This evolutionary innovation is thought to be facilitated by the pervasive translation of intergenic transcripts, which exposes a reservoir of variable polypeptides to natural selection. Do intergenic translation events yield polypeptides with useful biochemical capacities? The answer to this question remains controversial. Here, we systematically characterized howde novoemerging coding sequences impact fitness. In budding yeast, overexpression of these sequences was enriched in beneficial effects, while their disruption was generally inconsequential. We found that beneficial emerging sequences have a strong tendency to encode putative transmembrane proteins, which appears to stem from a cryptic propensity for transmembrane signals throughout thymine-rich intergenic regions of the genome. These findings suggest that novel genes with useful biochemical capacities, such as transmembrane domains, tend to evolvede novowithin intergenic loci that already harbored a blueprint for these capacities.

Publisher

Cold Spring Harbor Laboratory

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