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An (R)-Selective Transaminase from Thermomyces stellatus: Stabilizing the Tetrameric Form

Heckmann, Christian M.; Gourlay, Louise J.; Dominguez, Beatriz; Paradisi, Francesca

An (R)-Selective Transaminase from Thermomyces stellatus: Stabilizing the Tetrameric Form Thumbnail


Authors

Christian M. Heckmann

Louise J. Gourlay

Beatriz Dominguez

Francesca Paradisi



Abstract

The identification and 3D structural characterization of a homolog of the (R)-selective transaminase (RTA) from Aspergillus terreus (AtRTA), from the thermotolerant fungus Thermomyces stellatus (TsRTA) is here reported. The thermostability of TsRTA (40% retained activity after 7 days at 40°C) was initially attributed to its tetrameric form in solution, however subsequent studies of AtRTA revealed it also exists predominantly as a tetramer yet, at 40°C, it is inactivated within 48 h. The engineering of a cysteine residue to promote disulfide bond formation across the dimer-dimer interface stabilized both enzymes, with TsRTA_G205C retaining almost full activity after incubation at 50°C for 7 days. Thus, the role of this mutation was elucidated and the importance of stabilizing the tetramer for overall stability of RTAs is highlighted. TsRTA accepts the common amine donors (R)-methylbenzylamine, isopropylamine, and D-alanine as well as aromatic and aliphatic ketones and aldehydes.

Citation

Heckmann, C. M., Gourlay, L. J., Dominguez, B., & Paradisi, F. (2020). An (R)-Selective Transaminase from Thermomyces stellatus: Stabilizing the Tetrameric Form. Frontiers in Bioengineering and Biotechnology, 8, https://doi.org/10.3389/fbioe.2020.00707

Journal Article Type Article
Acceptance Date Jun 5, 2020
Online Publication Date Jul 22, 2020
Publication Date Jul 22, 2020
Deposit Date Jun 9, 2020
Publicly Available Date Jul 22, 2020
Journal Frontiers in Bioengineering and Biotechnology
Electronic ISSN 2296-4185
Publisher Frontiers Media
Peer Reviewed Peer Reviewed
Volume 8
Article Number 707
DOI https://doi.org/10.3389/fbioe.2020.00707
Keywords Biocatalysis; amino transferase; crystal structure; chiral amine; thermostability
Public URL https://nottingham-repository.worktribe.com/output/4613501
Publisher URL https://www.frontiersin.org/articles/10.3389/fbioe.2020.00707/full

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