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Dive into the research topics where Konstantin V. Moiseenko is active.

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Featured researches published by Konstantin V. Moiseenko.


Biochimie | 2015

The Trametes hirsuta 072 laccase multigene family: Genes identification and transcriptional analysis under copper ions induction

Daria V. Vasina; Orkhan N. Mustafaev; Konstantin V. Moiseenko; Natalia S. Sadovskaya; Olga A. Glazunova; Аlexander А. Tyurin; Tatiana V. Fedorova; Andrey R. Pavlov; Tatiana V. Tyazhelova; Irina V. Goldenkova-Pavlova; O. V. Koroleva

Laccases, blue copper-containing oxidases, ≿ an play an important role in a variety of natural processes. The majority of fungal laccases are encoded by multigene families that express closely related proteins with distinct functions. Currently, only the properties of major gene products of the fungal laccase families have been described. Our study is focused on identification and characterization of laccase genes, which are transcribed in basidiomycete Trametes hirsuta 072, an efficient lignin degrader, in a liquid medium, both without and with induction of laccase transcription by copper ions. We carried out production of cDNA libraries from total fungal RNA, followed by suppression subtractive hybridization and mirror orientation selection procedures, and then used Next Generation Sequencing to identify low abundance and differentially expressed laccase transcripts. This approach resulted in description of five laccase genes of the fungal family, which, according to the phylogenetic analysis, belong to distinct clusters within the Trametes genus. Further analysis established similarity of physical, chemical, and catalytic properties between laccases inside each cluster. Structural modeling suggested importance of the sequence differences in the clusters for laccase substrate specificity and catalytic efficiency. The implications of the laccase variations for the fungal physiology are discussed.


Journal of Basic Microbiology | 2016

Laccase multigene families in Agaricomycetes

Konstantin V. Moiseenko; Liliya G. Maloshenok; Daria V. Vasina; Sergey Bruskin; Tatiana V. Tyazhelova; O. V. Koroleva

Here we present the results of the exploration of laccase multigene families (MGFs) in basidiomycetous fungi from different taxonomic groups using a next generation sequencing (NGS) technology. In our study, multiple laccase genes were identified in all of the investigated fungi (13 species) from Polyporaceae, Phanerochaetaceae, Meruliaceae, Pleurotaceae, Physalacriaceae, and Peniophoraceae families. It was shown that phylogenetic positioning of the newly identified sequences exhibit patterns of clusterization with respect to enzyme properties. This can be a potentially useful tool for selecting naturally existing laccases with different physicochemical characteristics relevant to different biotechnological applications. Moreover, the method developed in this study can be used in the screening of environmental samples and fast characterization of laccase MGFs in newly identified fungal species.


Phytochemistry | 2015

Diacylglyceryltrimethylhomoserine content and gene expression changes triggered by phosphate deprivation in the mycelium of the basidiomycete Flammulina velutipes

Svetlana V. Senik; Liliya G. Maloshenok; Ekaterina R. Kotlova; Alexey L. Shavarda; Konstantin V. Moiseenko; Sergey Bruskin; O. V. Koroleva; Nadezhda V. Psurtseva

Diacylglyceryltrimethylhomoserines (DGTS) are betaine-type lipids that are phosphate-free analogs of phosphatidylcholines (PC). DGTS are abundant in some bacteria, algae, primitive vascular plants and fungi. In this study, we report inorganic phosphate (Pi) deficiency-induced DGTS synthesis in the basidial fungus Flammulina velutipes (Curt.: Fr.) Sing. We present results of an expression analysis of the BTA1 gene that codes for betaine lipid synthase and two genes of PC biosynthesis (CHO2 and CPT1) during phosphate starvation of F. velutipes culture. We demonstrate that FvBTA1 gene has increased transcript abundance under phosphate starvation. Despite depletion in PC, both CHO2 and CPT1 were determined to have increased expression. We also describe the deduced amino acid sequence and genomic structure of the BTA1 gene in F. velutipes. Phylogenetic relationships between putative orthologs of BTA1 proteins of basidiomycete fungi are discussed.


Genome Announcements | 2015

Draft Genome Sequence of the Fungus Trametes hirsuta 072

Andrey R. Pavlov; Tatiana V. Tyazhelova; Konstantin V. Moiseenko; Daria V. Vasina; Olga V. Mosunova; Tatiana V. Fedorova; Lilya G. Maloshenok; E. O. Landesman; Sergei A. Bruskin; Nadezhda V. Psurtseva; Alexei Slesarev; Sergei A. Kozyavkin; O. V. Koroleva

ABSTRACT A standard draft genome sequence of the white rot saprotrophic fungus Trametes hirsuta 072 (Basidiomycota, Polyporales) is presented. The genome sequence contains about 33.6 Mb assembled in 141 scaffolds with a G+C content of ~57.6%. The draft genome annotation predicts 14,598 putative protein-coding open reading frames (ORFs).


PLOS ONE | 2017

Lignin-degrading peroxidases in white-rot fungus Trametes hirsuta 072. Absolute expression quantification of full multigene family

Daria V. Vasina; Konstantin V. Moiseenko; Tatiana V. Fedorova; Tatiana V. Tyazhelova

Ligninolytic heme peroxidases comprise an extensive family of enzymes, which production is characteristic for white-rot Basidiomycota. The majority of fungal heme peroxidases are encoded by multigene families that differentially express closely related proteins. Currently, there were very few attempts to characterize the complete multigene family of heme peroxidases in a single fungus. Here we are focusing on identification and characterization of peroxidase genes, which are transcribed and secreted by basidiomycete Trametes hirsuta 072, an efficient lignin degrader. The T. hirsuta genome contains 18 ligninolytic peroxidase genes encoding 9 putative lignin peroxidases (LiP), 7 putative short manganese peroxidases (MnP) and 2 putative versatile peroxidases (VP). Using ddPCR method we have quantified the absolute expression of the 18 peroxidase genes under different culture conditions and on different growth stages of basidiomycete. It was shown that only two genes (one MnP and one VP) were prevalently expressed as well as secreted into cultural broth under all conditions investigated. However their transcriptome and protein profiles differed in time depending on the effector used. The expression of other peroxidase genes revealed a significant variability, so one can propose the specific roles of these enzymes in fungal development and lifestyle.


PLOS ONE | 2018

White-rot basidiomycetes Junghuhnia nitida and Steccherinum bourdotii: Oxidative potential and laccase properties in comparison with Trametes hirsuta and Coriolopsis caperata

Olga A. Glazunova; Natalia V. Shakhova; Nadezhda V. Psurtseva; Konstantin V. Moiseenko; Sergei Y. Kleimenov; Tatiana V. Fedorova

White-rot basidiomycetes from the poorly studied residual polyporoid clade of Polyporales order Junghuhnia nitida (Pers.) Ryvarden and Steccherinum bourdotii Saliba & A. David grow as secondary xylotrohps on well decomposed woody materials. The main objective of the current study was to compare oxidative potential, growth, production of oxidative enzymes and laccase properties of J. nitida and S. bourdotii with that of typical primary xylotrohps Trametes hirsuta (Wulfen) Lloyd and Coriolopsis caperata (Berk.) Murrill, belonging to the core polyporoid clade. For the first time we report species J. nitida and S. bourdotii as active laccase producers. New laccases from J. nitida and S. bourdotii were purified and characterized. They had an identical molecular weight of 63 kDa and isoelectric points of 3.4 and 3.1, respectively. However, the redox potential of the T1 copper site for both J. nitida (610 mV) and S. bourdotii (640 mV) laccases was lower than those for T. hirsuta and C. caperata laccases. The new laccases showed higher temperature optima and better thermal stability than T. hirsuta and C. caperata laccases. Their half-lives were more than 40 min at 70 °C. The laccases from J. nitida and S. bourdotii showed higher affinity to syringyl-type phenolic compounds than T. hirsuta and C. caperata laccases. The oxidative potential of studied fungi as well as the properties of their laccases are discussed in terms of the fungal life-style.


International Journal of Biological Macromolecules | 2018

Structure-function study of two new middle-redox potential laccases from basidiomycetes Antrodiella faginea and Steccherinum murashkinskyi.

Olga A. Glazunova; K. M. Polyakov; Konstantin V. Moiseenko; Sergei A. Kurzeev; T. V. Fedorova

Laccases are multicopper oxidases that catalyze oxidation of a wide range of organic and inorganic substrates accompanied by the reduction of dioxygen to water. The physicochemical and catalytic properties of two new fungal laccases from basidiomycetes Antrodiella faginea (AfL) and Steccherinum murashkinskyi (SmL) with middle redox potential of the T1 copper site were studied. The X-ray structures of AfL and SmL were solved at 1.75 Å and 0.95 Å, respectively. The oxidized state of copper ions in the active site was observed in AfL structure, while the mixture of oxidized and reduced states was observed in SmL structure. These oxidized and reduced states relate to the position of copper ions, their coordination, and nature and position of oxygen ligands. Comparative analysis of the T1 site environment of laccases with known structure allowed us to highlight the six types of the secondary coordination sphere of the T1 copper. The solvent accessible surface area of the conservative region of the secondary coordination sphere of the T1 copper correlates with its the redox potential. It was shown that the laccase classification by the structure of the T1 copper secondary coordination sphere is in agreement to ecophysiological behavior of laccase producing fungi.


Atmospheric Environment | 2013

Methane emissions from 2000 to 2011 wildfires in Northeast Eurasia estimated with MODIS burned area data

Anastasia Vasileva; Konstantin V. Moiseenko


Catalysts | 2018

Catalytic Efficiency of Basidiomycete Laccases: Redox Potential versus Substrate-Binding Pocket Structure

Olga A. Glazunova; N. A. Trushkin; Konstantin V. Moiseenko; I. S. Filimonov; T. V. Fedorova


Atmospheric Chemistry and Physics | 2017

Emission ratios of trace gases and particles for Siberian forest fires on the basis of mobile ground observations

Anastasia Vasileva; Konstantin V. Moiseenko; A. I. Skorokhod; I. B. Belikov; Vladimir Kopeikin; Olga Yu. Lavrova

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Daria V. Vasina

Russian Academy of Sciences

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Olga A. Glazunova

Russian Academy of Sciences

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O. V. Koroleva

Russian Academy of Sciences

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A. I. Skorokhod

Russian Academy of Sciences

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Anastasia Vasileva

Russian Academy of Sciences

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Andrey R. Pavlov

Russian Academy of Sciences

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