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A Case Study of Eukaryogenesis: The Evolution of Photoreception by Photolyase/Cryptochrome Proteins

Jennifer A. Miles; Thomas A. Davies; Robert D. Hayman; Georgia Lorenzen; Jamie Taylor; Mubeena Anjarwalla; Sammie J. R. Allen; John W. D. Graham; Paul C. Taylor
Journal of Molecular Evolution · Vol. 88, Issue 8-9 · pp. 662-673 · 2020

Abstract

Eukaryogenesis, the origin of the eukaryotes, is still poorly understood. Herein, we show how a detailed all-kingdom phylogenetic analysis overlaid with a map of key biochemical features can provide valuable clues. The photolyase/cryptochrome family of proteins are well known to repair DNA in response to potentially harmful effects of sunlight and to entrain circadian rhythms. Phylogenetic analysis of photolyase/cryptochrome protein sequences from a wide range of prokaryotes and eukaryotes points to a number of horizontal gene transfer events between ancestral bacteria and ancestral eukaryotes. Previous experimental research has characterised patterns of tryptophan residues in these proteins that are important for photoreception, specifically a tryptophan dyad, a canonical tryptophan triad, an alternative tryptophan triad, a tryptophan tetrad and an alternative tetrad. Our results suggest that the spread of the different triad and tetrad motifs across the kingdoms of life accompanied the putative horizontal gene transfers and is consistent with multiple bacterial contributions to eukaryogenesis.

Bibliographic Information

JournalJournal of Molecular Evolution
PublisherSpringer
Publication Date2020-11-01
Publication Year2020
Volume88
Issue8-9
Pages662-673
Document TypeJournal Article
Print ISSN0022-2844
eISSN1432-1432
DOI10.1007/s00239-020-09965-x

Access Information

NARA Access Coverage1971-01-01~Current
Journal Homepagehttps://www.springer.com/journal/239
Publisher PageOpen Publisher Page
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