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Novel heme-binding enables allosteric modulation in an ancient TIM-barrel glycosidase

Gloria Gamiz-Arco, Luis I. Gutierrez-Rus, Valeria A. Risso, Beatriz Ibarra-Molero, Yosuke Hoshino, Dušan Petrović, Adrian Romero-Rivera, Burckhard Seelig, Jose A. Gavira, Shina C.L. Kamerlin, Eric A. Gaucher, Jose M. Sanchez-Ruiz
doi: https://doi.org/10.1101/2020.05.27.118968
Gloria Gamiz-Arco
1Departamento de Quimica Fisica. Facultad de Ciencias, Unidad de Excelencia de Quimica Aplicada a Biomedicina y Medioambiente (UEQ), Universidad de Granada, 18071 Granada, Spain
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Luis I. Gutierrez-Rus
1Departamento de Quimica Fisica. Facultad de Ciencias, Unidad de Excelencia de Quimica Aplicada a Biomedicina y Medioambiente (UEQ), Universidad de Granada, 18071 Granada, Spain
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Valeria A. Risso
1Departamento de Quimica Fisica. Facultad de Ciencias, Unidad de Excelencia de Quimica Aplicada a Biomedicina y Medioambiente (UEQ), Universidad de Granada, 18071 Granada, Spain
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Beatriz Ibarra-Molero
1Departamento de Quimica Fisica. Facultad de Ciencias, Unidad de Excelencia de Quimica Aplicada a Biomedicina y Medioambiente (UEQ), Universidad de Granada, 18071 Granada, Spain
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Yosuke Hoshino
2Department of Biology, Georgia State University, Atlanta, GA 30306 U.S.A.
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Dušan Petrović
3Science for Life Laboratory, Department of Chemistry-BMC, Uppsala University, BMC Box 576, S-751 23 Uppsala, Sweden
7Hit Discovery, Discovery Sciences, Biopharmaceutical R&D, AstraZeneca, 431 50 Gothenburg, Sweden
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Adrian Romero-Rivera
3Science for Life Laboratory, Department of Chemistry-BMC, Uppsala University, BMC Box 576, S-751 23 Uppsala, Sweden
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Burckhard Seelig
4Department of Biochemistry, Molecular Biology, and Biophysics, University of Minnesota, Minneapolis, Minnesota, United States of America, & BioTechnology Institute, University of Minnesota, St. Paul, Minnesota, United States of America
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Jose A. Gavira
5Laboratorio de Estudios Cristalograficos, Instituto Andaluz de Ciencias de la Tierra, CSIC, Unidad de Excelencia de Quimica Aplicada a Biomedicina y Medioambiente (UEQ), Universidad de Granada, Avenida de las Palmeras 4, Granada 18100 Armilla, Spain
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Shina C.L. Kamerlin
3Science for Life Laboratory, Department of Chemistry-BMC, Uppsala University, BMC Box 576, S-751 23 Uppsala, Sweden
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Eric A. Gaucher
2Department of Biology, Georgia State University, Atlanta, GA 30306 U.S.A.
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Jose M. Sanchez-Ruiz
1Departamento de Quimica Fisica. Facultad de Ciencias, Unidad de Excelencia de Quimica Aplicada a Biomedicina y Medioambiente (UEQ), Universidad de Granada, 18071 Granada, Spain
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  • For correspondence: sanchezr@ugr.es
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ABSTRACT

Glycosidases are phylogenetically widely distributed enzymes that are crucial for the cleavage of glycosidic bonds. Here, we present the exceptional properties of a putative ancestor of bacterial and eukaryotic family-1 glycosidases. The ancestral protein shares the TIM-barrel fold with its modern descendants but displays large regions with greatly enhanced conformational flexibility. Yet, the barrel core remains comparatively rigid and the ancestral glycosidase activity is stable, with an optimum temperature within the experimental range for thermophilic family-1 glycosidases. None of the ~5500 reported crystallographic structures of ~1400 modern glycosidases show a bound porphyrin. Remarkably, the ancestral glycosidase binds heme tightly and stoichiometrically at a well-defined buried site. Heme binding rigidifies this TIM-barrel and allosterically enhances catalysis. Our work demonstrates the capability of ancestral protein reconstructions to reveal valuable but unexpected biomolecular features when sampling distant sequence space. The potential of the ancestral glycosidase as a scaffold for custom catalysis and biosensor engineering is discussed.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • ↵* email: lynn.kamerlin{at}kemi.uu.se or egaucher{at}gsu.edu or sanchezr{at}ugr.es

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted May 28, 2020.
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Novel heme-binding enables allosteric modulation in an ancient TIM-barrel glycosidase
Gloria Gamiz-Arco, Luis I. Gutierrez-Rus, Valeria A. Risso, Beatriz Ibarra-Molero, Yosuke Hoshino, Dušan Petrović, Adrian Romero-Rivera, Burckhard Seelig, Jose A. Gavira, Shina C.L. Kamerlin, Eric A. Gaucher, Jose M. Sanchez-Ruiz
bioRxiv 2020.05.27.118968; doi: https://doi.org/10.1101/2020.05.27.118968
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Novel heme-binding enables allosteric modulation in an ancient TIM-barrel glycosidase
Gloria Gamiz-Arco, Luis I. Gutierrez-Rus, Valeria A. Risso, Beatriz Ibarra-Molero, Yosuke Hoshino, Dušan Petrović, Adrian Romero-Rivera, Burckhard Seelig, Jose A. Gavira, Shina C.L. Kamerlin, Eric A. Gaucher, Jose M. Sanchez-Ruiz
bioRxiv 2020.05.27.118968; doi: https://doi.org/10.1101/2020.05.27.118968

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