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Light-Regulation of Tryptophan Synthase by Combining Protein Design and Enzymology
Kneuttinger, Andrea C.
, Zwisele, Stefanie, Straub, Kristina
, Bruckmann, Astrid, Busch, Florian, Kinateder, Thomas, Gaim, Barbara, Wysocki, Vicki H.
, Merkl, Rainer
and Sterner, Reinhard
(2019)
Light-Regulation of Tryptophan Synthase by Combining Protein Design and Enzymology.
International Journal of Molecular Sciences 20 (20), p. 5106.
Date of publication of this fulltext: 26 Nov 2019 13:53
Article
DOI to cite this document: 10.5283/epub.41086
Abstract
The spatiotemporal control of enzymes by light is of growing importance for industrial biocatalysis. Within this context, the photo-control of allosteric interactions in enzyme complexes, common to practically all metabolic pathways, is particularly relevant. A prominent example of a metabolic complex with a high application potential is tryptophan synthase from Salmonella typhimurium (TS), in ...
The spatiotemporal control of enzymes by light is of growing importance for industrial biocatalysis. Within this context, the photo-control of allosteric interactions in enzyme complexes, common to practically all metabolic pathways, is particularly relevant. A prominent example of a metabolic complex with a high application potential is tryptophan synthase from Salmonella typhimurium (TS), in which the constituting TrpA and TrpB subunits mutually stimulate each other via a sophisticated allosteric network. To control TS allostery with light, we incorporated the unnatural amino acid o-nitrobenzyl-O-tyrosine (ONBY) at seven strategic positions of TrpA and TrpB. Initial screening experiments showed that ONBY in position 58 of TrpA (aL58ONBY) inhibits TS activity most effectively. Upon UV irradiation, ONBY decages to tyrosine, largely restoring the capacity of TS. Biochemical characterization, extensive steady-state enzyme kinetics, and titration studies uncovered the impact of aL58ONBY on the activities of TrpA and TrpB and identified reaction conditions under which the influence of ONBY decaging on allostery reaches its full potential. By applying those optimal conditions, we succeeded to directly light-activate TS(aL58ONBY) by a factor of similar to 100. Our findings show that rational protein design with a photo-sensitive unnatural amino acid combined with extensive enzymology is a powerful tool to fine-tune allosteric light-activation of a central metabolic enzyme complex.
Involved Institutions
Details
| Item type | Article | ||||
| Journal or Publication Title | International Journal of Molecular Sciences | ||||
| Publisher: | MDPI | ||||
|---|---|---|---|---|---|
| Place of Publication: | BASEL | ||||
| Volume: | 20 | ||||
| Number of Issue or Book Chapter: | 20 | ||||
| Page Range: | p. 5106 | ||||
| Date | 15 October 2019 | ||||
| Institutions | Biology, Preclinical Medicine > Institut für Biophysik und physikalische Biochemie > Prof. Dr. Reinhard Sterner Biology, Preclinical Medicine > Institut für Biochemie, Genetik und Mikrobiologie > Lehrstuhl für Biochemie I > Prof. Dr. Gunter Meister Biology, Preclinical Medicine > Institut für Biophysik und physikalische Biochemie > Prof. Dr. Rainer Merkl | ||||
| Identification Number |
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| Keywords | 3-DIMENSIONAL STRUCTURE; OPTICAL CONTROL; AMINO-ACID; WILD-TYPE; ACTIVATION; INDOLE; COMMUNICATION; MECHANISM; COMPLEX; BIOCATALYSIS; allostery; biocatalysis; enzymology; photo-control; protein design; unnatural amino acids | ||||
| Dewey Decimal Classification | 500 Science > 570 Life sciences | ||||
| Status | Published | ||||
| Refereed | Yes, this version has been refereed | ||||
| Created at the University of Regensburg | Yes | ||||
| URN of the UB Regensburg | urn:nbn:de:bvb:355-epub-410866 | ||||
| Item ID | 41086 |
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