J 2024

FireProt 2.0: web-based platform for the fully automated design of thermostable proteins

MUSIL, Miloš; Andrej JEZIK; Jana HORÁČKOVÁ; Simeon BORKO; Petr KABOUREK et. al.

Základní údaje

Originální název

FireProt 2.0: web-based platform for the fully automated design of thermostable proteins

Autoři

MUSIL, Miloš; Andrej JEZIK; Jana HORÁČKOVÁ; Simeon BORKO; Petr KABOUREK; Jiří DAMBORSKÝ a David BEDNÁŘ

Vydání

Briefings in Bioinformatics, OXFORD, Oxford University Press, 2024, 1467-5463

Další údaje

Jazyk

angličtina

Typ výsledku

Článek v odborném periodiku

Stát vydavatele

Velká Británie a Severní Irsko

Utajení

není předmětem státního či obchodního tajemství

Odkazy

Organizace

Přírodovědecká fakulta – Masarykova univerzita – Repozitář

UT WoS

001173375300007

EID Scopus

2-s2.0-85179485662

Klíčová slova anglicky

ancestral; back-to-consensus; B-factor; epistasis; evolution; force-field; multiple-point mutant; protein engineering; saturation mutagenesis; thermostability

Návaznosti

EF17_043/0009632, projekt VaV. FW03010208, projekt VaV. LM2018140, projekt VaV. LM2023055, projekt VaV. LM2023069, projekt VaV. LX22NPO5107, projekt VaV. 857560, interní kód Repo.
Změněno: 26. 3. 2024 03:18, RNDr. Daniel Jakubík

Anotace

V originále

Thermostable proteins find their use in numerous biomedical and biotechnological applications. However, the computational design of stable proteins often results in single-point mutations with a limited effect on protein stability. However, the construction of stable multiple-point mutants can prove difficult due to the possibility of antagonistic effects between individual mutations. FireProt protocol enables the automated computational design of highly stable multiple-point mutants. FireProt 2.0 builds on top of the previously published FireProt web, retaining the original functionality and expanding it with several new stabilization strategies. FireProt 2.0 integrates the AlphaFold database and the homology modeling for structure prediction, enabling calculations starting from a sequence. Multiple-point designs are constructed using the Bron–Kerbosch algorithm minimizing the antagonistic effect between the individual mutations. Users can newly limit the FireProt calculation to a set of user-defined mutations, run a saturation mutagenesis of the whole protein or select rigidifying mutations based on B-factors. Evolution-based back-to-consensus strategy is complemented by ancestral sequence reconstruction. FireProt 2.0 is significantly faster and a reworked graphical user interface broadens the tool’s availability even to users with older hardware. FireProt 2.0 is freely available at http://loschmidt.chemi.muni.cz/fireprotweb.

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