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Domain Truncation in Hispidin Synthase Orthologs from Non-Bioluminescent Fungi Does Not Lead to Hispidin Biosynthesis

Anastasia V. Balakireva 1, 2
Tatiana V. Chepurnykh 1
Nadezhda M Markina 1, 2
Sergey I. Kovalchuk 1
A. S. Tsarkova 1, 3
Ilia V Yampolsky 1, 3
Karen S. Sarkisyan 1, 2, 4, 5
Тип публикацииJournal Article
Дата публикации2023-01-10
scimago Q1
wos Q1
БС1
SJR1.273
CiteScore9.0
Impact factor4.9
ISSN16616596, 14220067
Catalysis
Organic Chemistry
Inorganic Chemistry
Physical and Theoretical Chemistry
Computer Science Applications
Spectroscopy
Molecular Biology
General Medicine
Краткое описание

Hispidin is a polyketide found in plants and fungi. In bioluminescent fungi, hispidin serves as a precursor of luciferin and is produced by hispidin synthases. Previous studies revealed that hispidin synthases differ in orthologous polyketide synthases from non-bioluminescent fungi by the absence of two domains with predicted ketoreductase and dehydratase activities. Here, we investigated the hypothesis that the loss of these domains in evolution led to the production of hispidin and the emergence of bioluminescence. We cloned three orthologous polyketide synthases from non-bioluminescent fungi, as well as their truncated variants, and assessed their ability to produce hispidin in a bioluminescence assay in yeast. Interestingly, expression of the full-length enzyme hsPKS resulted in dim luminescence, indicating that small amounts of hispidin are likely being produced as side products of the main reaction. Deletion of the ketoreductase and dehydratase domains resulted in no luminescence. Thus, domain truncation by itself does not appear to be a sufficient step for the emergence of efficient hispidin synthases from orthologous polyketide synthases. At the same time, the production of small amounts of hispidin or related compounds by full-length enzymes suggests that ancestral fungal species were well-positioned for the evolution of bioluminescence.

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Palkina K. A. et al. Domain Truncation in Hispidin Synthase Orthologs from Non-Bioluminescent Fungi Does Not Lead to Hispidin Biosynthesis // International Journal of Molecular Sciences. 2023. Vol. 24. No. 2. p. 1317.
ГОСТ со всеми авторами (до 50) Скопировать
Palkina K. A., Balakireva A. V., Belozerova O. A., Chepurnykh T., Markina N. M., Kovalchuk S., Tsarkova A. S., Mishin A. S., Yampolsky I. V., Sarkisyan K. S. Domain Truncation in Hispidin Synthase Orthologs from Non-Bioluminescent Fungi Does Not Lead to Hispidin Biosynthesis // International Journal of Molecular Sciences. 2023. Vol. 24. No. 2. p. 1317.
RIS |
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TY - JOUR
DO - 10.3390/ijms24021317
UR - https://www.mdpi.com/1422-0067/24/2/1317
TI - Domain Truncation in Hispidin Synthase Orthologs from Non-Bioluminescent Fungi Does Not Lead to Hispidin Biosynthesis
T2 - International Journal of Molecular Sciences
AU - Palkina, Kseniia A
AU - Balakireva, Anastasia V.
AU - Belozerova, Olga A
AU - Chepurnykh, Tatiana V.
AU - Markina, Nadezhda M
AU - Kovalchuk, Sergey I.
AU - Tsarkova, A. S.
AU - Mishin, Alexander S.
AU - Yampolsky, Ilia V
AU - Sarkisyan, Karen S.
PY - 2023
DA - 2023/01/10
PB - MDPI
SP - 1317
IS - 2
VL - 24
PMID - 36674833
SN - 1661-6596
SN - 1422-0067
ER -
BibTex |
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@article{2023_Palkina,
author = {Kseniia A Palkina and Anastasia V. Balakireva and Olga A Belozerova and Tatiana V. Chepurnykh and Nadezhda M Markina and Sergey I. Kovalchuk and A. S. Tsarkova and Alexander S. Mishin and Ilia V Yampolsky and Karen S. Sarkisyan},
title = {Domain Truncation in Hispidin Synthase Orthologs from Non-Bioluminescent Fungi Does Not Lead to Hispidin Biosynthesis},
journal = {International Journal of Molecular Sciences},
year = {2023},
volume = {24},
publisher = {MDPI},
month = {jan},
url = {https://www.mdpi.com/1422-0067/24/2/1317},
number = {2},
pages = {1317},
doi = {10.3390/ijms24021317}
}
MLA
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Palkina, Kseniia A., et al. “Domain Truncation in Hispidin Synthase Orthologs from Non-Bioluminescent Fungi Does Not Lead to Hispidin Biosynthesis.” International Journal of Molecular Sciences, vol. 24, no. 2, Jan. 2023, p. 1317. https://www.mdpi.com/1422-0067/24/2/1317.