bioRxiv · 10.1101/2020.02.19.956243
Cooption of polyalanine tract into a repressor domain in the mammalian transcription factor HoxA11
Abstract
An enduring problem in biology is explaining how the functions of genes originated and how those functions diverge between species. Despite detailed studies on the functional evolution of a few proteins, the molecular mechanisms by which protein functions have evolved are almost entirely unknown. Here we show that a polyalanine tract in the homeodomain transcription factor HoxA11 arose in the stem-lineage of mammals and functions as an autonomous repressor module by physically interacting with the PAH domains of SIN3 proteins. These results suggest that long polyalanine tracts, which are common in transcription factors and often associated with disease, may generally function as repressor domains and can contribute to the diversification of transcription factor functions despite the deleterious consequences of polyalanine tract expansion. Research HighlightsWe show that a polyalanine track in HoxA11 evolved into a repressor domain in mammals through an increase in alanine repeat number, indicating that transcription factors can evolve novel functions despite the potential deleterious consequences associated with amino acid repeats.
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Lynch, V. J., Wagner, G.. 2020-02-20. Cooption of polyalanine tract into a repressor domain in the mammalian transcription factor HoxA11. https://doi.org/10.1101/2020.02.19.956243
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