Arkady P Sinitsyn
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Explore the profile of Arkady P Sinitsyn including associated specialties, affiliations and a list of published articles.
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29
Citations
300
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Recent Articles
1.
Sinitsyna O, Volkov P, Zorov I, Rozhkova A, Emshanov O, Romanova Y, et al.
Appl Environ Microbiol
. 2025 Jan;
91(2):e0022624.
PMID: 39846749
Importance: The manuscript describes the properties of a novel recombinant GH71 mutanase Mut A from . Gene encoding mutanase was heterologously expressed in the host strain B1-537 (ΔniaD). The recipient...
2.
Kislitsin V, Chulkin A, Dotsenko A, Sinelnikov I, Sinitsyn A, Rozhkova A
Res Microbiol
. 2023 Dec;
175(4):104178.
PMID: 38160731
In this study, CRISPR/Cas9 genome editing was used to knockout the bgl2 gene encoding intracellular β-glucosidase filamentous fungus Penicillium verruculosum. This resulted in a dramatic reduction of secretion of cellulolytic...
3.
Komarova B, Novikova N, Gerbst A, Sinitsyna O, Rubtsova E, Kondratyeva E, et al.
J Org Chem
. 2023 Aug;
88(17):12542-12564.
PMID: 37593939
Stereospecific α-glucosylation of primary and secondary OH-group at carbohydrate acceptors is achieved using glucosyl -phenyl-trifluoroacetimidate (PTFAI) donor protected with an electron-withdrawing 2,4,5-trifluorobenzoyl (TFB) group at O-6 and the participating levulinoyl...
4.
Dotsenko A, Denisenko Y, Rozhkova A, Zorov I, Korotkova O, Sinitsyn A
Enzyme Microb Technol
. 2021 Nov;
152:109938.
PMID: 34753033
Hydrolytic enzymes are highly demanded in the industry. Thermostability is an important property of enzymes that affects the economic costs of the industrial processes. The rational design of GH10 xylanase...
5.
Sinelnikov I, Siedhoff N, Chulkin A, Zorov I, Schwaneberg U, Davari M, et al.
Front Bioeng Biotechnol
. 2021 Oct;
9:728501.
PMID: 34621729
Recently, the study of chitinases has become an important target of numerous research projects due to their potential for applications, such as biocontrol pest agents. Plant chitinases from carnivorous plants...
6.
Pramanik S, Semenova M, Rozhkova A, Zorov I, Korotkova O, Sinitsyn A, et al.
Biotechnol Bioeng
. 2021 Jul;
118(10):4014-4027.
PMID: 34196389
This study provides computational-assisted engineering of the cellobiohydrolase I (CBH-I) from Penicillium verruculosum with simultaneous enhanced thermostability and tolerance in ionic liquids, deep eutectic solvent, and concentrated seawater without affecting...
7.
Denisenko Y, Korotkova O, Zorov I, Rozhkova A, Semenova M, Elcheninov A, et al.
Biochemistry (Mosc)
. 2021 May;
86(4):489-495.
PMID: 33941069
Heterologous endo-xanthanase (EX) from the thermophilic planktomycete Thermogutta terrifontis strain was obtained using Penicillium verruculosum 537 (ΔniaD) expression system with the cellobiohydrolase 1 gene promoter. Homogeneous EX with a molecular...
8.
Karp S, Rozhkova A, Semenova M, Osipov D, de Pauli S, Sinitsyna O, et al.
Bioresour Technol
. 2021 Mar;
330:124888.
PMID: 33713945
The aim of this study was to develop optimized enzyme cocktails, containing native and recombinant purified enzymes from five fungal species, for the saccharification of alkali- and acid-pretreated sugarcane bagasse...
9.
Dotsenko A, Dotsenko G, Rozhkova A, Zorov I, Sinitsyn A
Biochimie
. 2020 Jul;
176:103-109.
PMID: 32621943
Thermostability is a fundamental characteristic of enzymes that is of high importance for industrial implementation of enzymatic catalysis. Cellobiohydrolases are enzymes capable to hydrolyze the most abundant natural polysaccharide -...
10.
Contreras F, Pramanik S, Rozhkova A, Zorov I, Korotkova O, Sinitsyn A, et al.
Int J Mol Sci
. 2020 Mar;
21(5).
PMID: 32111065
Lignocellulosic biomass is a most promising feedstock in the production of second-generation biofuels. Efficient degradation of lignocellulosic biomass requires a synergistic action of several cellulases and hemicellulases. Cellulases depolymerize cellulose,...