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


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.

SUBMITTER: Heckmann CM 

PROVIDER: S-EPMC7387707 | biostudies-literature | 2020

REPOSITORIES: biostudies-literature

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An (<i>R</i>)-Selective Transaminase From <i>Thermomyces stellatus</i>: Stabilizing the Tetrameric Form.

Heckmann Christian M CM   Gourlay Louise J LJ   Dominguez Beatriz B   Paradisi Francesca F  

Frontiers in bioengineering and biotechnology 20200722


The identification and 3D structural characterization of a homolog of the (<i>R</i>)-selective transaminase (RTA) from <i>Aspergillus terreus</i> (<i>At</i>RTA), from the thermotolerant fungus <i>Thermomyces stellatus</i> (<i>Ts</i>RTA) is here reported. The thermostability of <i>Ts</i>RTA (40% retained activity after 7 days at 40°C) was initially attributed to its tetrameric form in solution, however subsequent studies of <i>At</i>RTA revealed it also exists predominantly as a tetramer yet, at  ...[more]

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