Punctuated evolution and transitional hybrid network in an ancestral cell cycle of fungi

Author:

Medina Edgar M12ORCID,Turner Jonathan J3ORCID,Gordân Raluca24ORCID,Skotheim Jan M3ORCID,Buchler Nicolas E12ORCID

Affiliation:

1. Department of Biology, Duke University, Durham, United States

2. Center for Genomic and Computational Biology, Duke University, Durham, United States

3. Department of Biology, Stanford University, Stanford, United States

4. Department of Biostatistics and Bioinformatics, Duke University, Durham, United States

Abstract

Although cell cycle control is an ancient, conserved, and essential process, some core animal and fungal cell cycle regulators share no more sequence identity than non-homologous proteins. Here, we show that evolution along the fungal lineage was punctuated by the early acquisition and entrainment of the SBF transcription factor through horizontal gene transfer. Cell cycle evolution in the fungal ancestor then proceeded through a hybrid network containing both SBF and its ancestral animal counterpart E2F, which is still maintained in many basal fungi. We hypothesize that a virally-derived SBF may have initially hijacked cell cycle control by activating transcription via the cis-regulatory elements targeted by the ancestral cell cycle regulator E2F, much like extant viral oncogenes. Consistent with this hypothesis, we show that SBF can regulate promoters with E2F binding sites in budding yeast.

Funder

National Institutes of Health

Burroughs Wellcome Fund

Defense Advanced Research Projects Agency

Alfred P. Sloan Foundation

National Science Foundation

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference92 articles.

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