Zobrazeno 1 - 10
of 29
pro vyhledávání: '"Justas Vaitekūnas"'
Autor:
Vytautas Petkevičius, Justas Vaitekūnas, Renata Gasparavičiūtė, Daiva Tauraitė, Rolandas Meškys
Publikováno v:
Microbial Biotechnology, Vol 14, Iss 4, Pp 1771-1783 (2021)
Summary Here, we present an improved whole‐cell biocatalysis system for the synthesis of heteroaromatic N‐oxides based on the production of a soluble di‐iron monooxygenase PmlABCDEF in Pseudomonas sp. MIL9 and Pseudomonas putida KT2440. The pre
Externí odkaz:
https://doaj.org/article/69c5c81e7c6a4935988ee2ac010b407c
Publikováno v:
Catalysts, Vol 13, Iss 3, p 587 (2023)
Aminotransferases (ATs) are pyridoxal 5′-phosphate-dependent enzymes that catalyze the reversible transfer of an amino group from an amino donor to a keto substrate. ATs are promising biocatalysts that are replacing traditional chemical routes for
Externí odkaz:
https://doaj.org/article/987ccd9c4fd141d988207f9280256c8c
Publikováno v:
Microorganisms, Vol 10, Iss 10, p 1930 (2022)
Paenibacillus sp. GKG was isolated based on its ability to produce hydrolysis zones on agar plates containing yeast cell wall substrate as the single carbon source. The extracellular enzymes secreted into the culture medium were identified by LC-MS/M
Externí odkaz:
https://doaj.org/article/7eab6c1e17c0445ba3a7bf4f3b425476
Autor:
Vida Časaitė, Mikas Sadauskas, Justas Vaitekūnas, Renata Gasparavičiūtė, Rita Meškienė, Izabelė Skikaitė, Mantas Sakalauskas, Jevgenija Jakubovska, Daiva Tauraitė, Rolandas Meškys
Publikováno v:
MicrobiologyOpen, Vol 8, Iss 8, Pp n/a-n/a (2019)
Abstract Here, we present a proof‐of‐principle for a new high‐throughput functional screening of metagenomic libraries for the selection of enzymes with different activities, predetermined by the substrate being used. By this approach, a total
Externí odkaz:
https://doaj.org/article/ec7f509282114674ba255b5cbbde38f8
Autor:
Justas Vaitekūnas, Renata Gasparavičiūtė, Jonita Stankevičiūtė, Gintaras Urbelis, Rolandas Meškys
Publikováno v:
Microorganisms, Vol 8, Iss 6, p 888 (2020)
N-Heterocyclic compounds are widely spread in the biosphere, being constituents of alkaloids, cofactors, allelochemicals, and artificial substances. However, the fate of such compounds including a catabolism of hydroxylated pyridines is not yet fully
Externí odkaz:
https://doaj.org/article/12de85d614904c49aecd2e948cb6a087
Publikováno v:
Biomolecules, Vol 10, Iss 4, p 663 (2020)
A plant auxin hormone indole-3-acetic acid (IAA) can be assimilated by bacteria as an energy and carbon source, although no degradation has been reported for indole-3-propionic acid and indole-3-butyric acid. While significant efforts have been made
Externí odkaz:
https://doaj.org/article/24e27d5e42404a4996a999353048ed53
Publikováno v:
Catalysts, Vol 9, Iss 4, p 356 (2019)
The aromatic N-oxides have received increased attention over the last few years due to their potential application in medicine, agriculture and organic chemistry. As a green alternative in their synthesis, the biocatalytic method employing whole cell
Externí odkaz:
https://doaj.org/article/4ebeb869c92e45ccb103a9882b34ae09
Autor:
Vytautas Petkevičius, Justas Vaitekūnas, Mikas Sadauskas, Fabian Peter Josef Schultes, Dirk Tischler, Rolandas Meškys
Publikováno v:
Catalysis Science & Technology. 12:7293-7307
Whole cells of Pseudomonas putida KT2440 producing multicomponent non-heme diiron monooxygenase PmlABCDEF transforms a vast variety of compounds into different oxy-derivatives, in certain cases with high regio- or enantioselectivity.
Autor:
Nina Urbelienė, Matas Tiškus, Giedrė Tamulaitienė, Renata Gasparavičiūtė, Ringailė Lapinskaitė, Vykintas Jauniškis, Jurgis Sūdžius, Rita Meškienė, Daiva Tauraitė, Emilija Skrodenytė, Gintaras Urbelis, Justas Vaitekūnas, Rolandas Meškys
Publikováno v:
Science advances, New York : American Association for the Advancement of Science (AAAS), 2023, vol. 9, iss. 5, art. no. eade4361, p. 1-13
Science advances 9(5), eade4361 (2023). doi:10.1126/sciadv.ade4361
Science advances 9(5), eade4361 (2023). doi:10.1126/sciadv.ade4361
Science advances 9(5), eade4361 (2023). doi:10.1126/sciadv.ade4361
Cytidine deaminases (CDAs) catalyze the hydrolytic deamination of cytidine and 2′-deoxycytidine to uridine and 2′-deoxyuridine. Here, we report that prokaryotic homo-tetramer
Cytidine deaminases (CDAs) catalyze the hydrolytic deamination of cytidine and 2′-deoxycytidine to uridine and 2′-deoxyuridine. Here, we report that prokaryotic homo-tetramer
Autor:
Gediminas, Plakys, Renata, Gasparavičiūtė, Justas, Vaitekūnas, Rasa, Rutkienė, Rolandas, Meškys
Publikováno v:
Microorganisms. 10(10)