Olga N Rozova
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Explore the profile of Olga N Rozova including associated specialties, affiliations and a list of published articles.
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17
Citations
112
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Recent Articles
1.
Melnikov O, Rozova O, Reshetnikov A, Khmelenina V, Mustakhimov I
Curr Microbiol
. 2024 Aug;
81(9):300.
PMID: 39110243
Biochemistry of carbon assimilation in aerobic methylotrophs growing on reduced C1 compounds has been intensively studied due to the vital role of these microorganisms in nature. The biochemical pathways of...
2.
Melnikov O, Mustakhimov I, Reshetnikov A, Molchanov M, Machulin A, Khmelenina V, et al.
PLoS One
. 2023 Oct;
18(10):e0289976.
PMID: 37883386
The methanotrophic bacterium Methylotuvimicrobium alcaliphilum 20Z is an industrially promising candidate for bioconversion of methane into value-added chemicals. Here, we have study the metabolic consequences of the breaking in the...
3.
Rozova O, Ekimova G, Molochkov N, Reshetnikov A, Khmelenina V, Mustakhimov I
Sci Rep
. 2021 Apr;
11(1):8795.
PMID: 33888823
Aerobic methanotrophic bacteria utilize methane as a growth substrate but are unable to grow on any sugars. In this study we have shown that two obligate methanotrophs, Methylotuvimicrobium alcaliphilum 20Z...
4.
Reshetnikov A, But S, Rozova O, Mustakhimov I, Khmelenina V
Biotechnol Lett
. 2021 Apr;
43(7):1421-1427.
PMID: 33860390
Objectives: Alteration of the cofactor specificity of acrylyl-CoA reductase (AcuI) catalyzing the NAD(P)H-dependent reduction of acrylyl-CoA to propionyl-CoA is often desirable for designing of artificial metabolic pathways of various appointments....
5.
Reshetnikov A, Rozova O, Trotsenko Y, But S, Khmelenina V, Mustakhimov I
PLoS One
. 2020 May;
15(4):e0232244.
PMID: 32353000
Background: Microorganisms living in saline environments are forced to regulate turgor via the synthesis of organic osmoprotective compounds. Microbial adaptation to fluctuations in external salinity includes degradation of compatible solutes....
6.
Rozova O, Mustakhimov I, But S, Reshetnikov A, Khmelenina V
PLoS One
. 2019 Nov;
14(11):e0225054.
PMID: 31738793
The bacteria utilizing methane as a growth substrate (methanotrophs) are important constituents of the biosphere. Methanotrophs mitigate the emission of anthropogenic and natural greenhouse gas methane to the environment and...
7.
Khmelenina V, But S, Rozova O, Trotsenko Y
Curr Issues Mol Biol
. 2019 Jun;
33:85-100.
PMID: 31166186
This review is focused on recent studies of carbon metabolism in aerobic methanotrophs that specifically addressed the properties, distribution and phylogeny of some of the key enzymes involved in assimilation...
8.
Reshetnikov A, Solntseva N, Rozova O, Mustakhimov I, Trotsenko Y, Khmelenina V
Microorganisms
. 2019 Feb;
7(2).
PMID: 30769875
The genes encoding adenosine triphosphate (ATP)- and polyphosphate (polyP)-dependent glucokinases (Glk) were identified in the aerobic obligate methanotroph sp. 12. The recombinant proteins were obtained by the heterologous expression of...
9.
Mustakhimov I, Rozova O, Solntseva N, Khmelenina V, Reshetnikov A, Trotsenko Y
Antonie Van Leeuwenhoek
. 2016 Dec;
110(3):375-386.
PMID: 27915410
Aerobic bacteria utilizing methane as the carbon and energy source do not use sugars as growth substrates but possess the gene coding for glucokinase (Glk), an enzyme converting glucose into...
10.
Rozova O, Khmelenina V, Bocharova K, Mustakhimov I, Trotsenko Y
Microorganisms
. 2016 Sep;
3(1):47-59.
PMID: 27682078
We have expressed the l-malate dehydrogenase (MDH) genes from aerobic methanotrophs Methylomicrobium alcaliphilum 20Z and Methylosinus trichosporium OB3b as his-tagged proteins in Escherichia coli. The substrate specificities, enzymatic kinetics and...