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Reconstructing the Remote Origins of a Fold Singleton from a Flavodoxin-Like Ancestor.


ABSTRACT: Evolutionary processes that led to the emergence of structured protein domains left footprints in the sequences of modern proteins. We searched for such hints employing state-of-the-art sequence analysis and found evidence that the HemD-like fold emerged from the flavodoxin-like fold through segment swap and gene duplication. To verify this hypothesis, we reverted these evolutionary steps experimentally, constructing a HemD-half that resulted in a protein with the canonical flavodoxin-like architecture. These results of fold reconstruction from the sequence of a different fold strongly support our hypothesis of common ancestry. It further illustrates the plasticity of modern proteins to form new folded proteins.

SUBMITTER: Toledo-Patino S 

PROVIDER: S-EPMC6968885 | biostudies-literature | 2019 Dec

REPOSITORIES: biostudies-literature

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Reconstructing the Remote Origins of a Fold Singleton from a Flavodoxin-Like Ancestor.

Toledo-Patiño Saacnicteh S   Chaubey Manish M   Coles Murray M   Höcker Birte B  

Biochemistry 20191120 48


Evolutionary processes that led to the emergence of structured protein domains left footprints in the sequences of modern proteins. We searched for such hints employing state-of-the-art sequence analysis and found evidence that the HemD-like fold emerged from the flavodoxin-like fold through segment swap and gene duplication. To verify this hypothesis, we reverted these evolutionary steps experimentally, constructing a HemD-half that resulted in a protein with the canonical flavodoxin-like archi  ...[more]

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