9 RESULTS
Structural сomputational Biology sectionInterpretation of the features of a linear regression model for predicting the survival time of the amyotrophic lateral sclerosis patients with mutated SOD1

Interpretation of the features of a linear regression model for predicting the survival time of the amyotrophic lateral sclerosis patients with mutated SOD1

Nikolay Alemasov1, Alexandr Shcherbakov2, Vladimir Timofeev3, Vladimir Ivanisenko4
1The Federal Research Center Institute of Cytology and Genetics, The Siberian Branch of the Russian Academy of Sciences, 630090, Prospekt Lavrentyeva 10, Novosibirsk, Russia, alemasov@bionet.nsc.ru
2Novosibirsk State Technical University, pr. Karla Marksa 20, Novosibirsk, 630073, Russia, aleksandr.serbakov@yandex.ru
3Novosibirsk State Technical University, pr. Karla Marksa 20, Novosibirsk, 630073, Russia, v.timofeev@corp.nstu.ru
4The Federal Research Center Institute of Cytology and Genetics, The Siberian Branch of the Russian Academy of Sciences, 630090, Prospekt Lavrentyeva 10, Novosibirsk, Russia, salix@bionet.nsc.ru

Amyotrophic lateral sclerosis (ALS) is an incurable neurodegenerative disease characterised by the inevitable degeneration of central and peripheral motor neurons. Aggregation of mutant SOD1 is one of the molecular mechanisms underlying the onset of the disease. There are a number of regression models designed to predict the survival of patients based on an analysis of experimental data on thermostability, heterodimerization energy, and changes in the hydrophobicity of SOD1 mutants. Previously, we proposed regression models linking the change in the stability of hydrogen bonds in mutant SOD1 calculated using molecular dynamics with patients’ survival time. In this work, we developed an approach to the interpretation of features of linear regression models with the aim of a deeper understanding of the structural effects of mutations in the SOD1 protein. The approach suggested was based on the principal component analysis and over-representation of features including the sequence position of amino acid residues forming the hydrogen bonds detected within a range of the structural elements of the SOD1. This study can help one to deduce important structural regions in the protein which could be further targeted by small chemical compounds.

Structural сomputational Biology sectionNuclear envelope rupture in Drosophila D11 cells inhibits mitosis

Nuclear envelope rupture in Drosophila D11 cells inhibits mitosis

Snezhanna Sergeevna Saydakova1, Ksenia Nikolaevna Morozova2, Elena Vladimirovna Kiseleva3, Gera Alekseevna Pavlova4
1ICG SB RAS, NSU, custodian.of.midnight@gmail.com
2ICG SB RAS, morozko@bionet.nsc.ru
3ICG SB RAS, elka@bionet.nsc.ru
4IMCB SB RAS, gera.pavlova@mcb.nsc.ru

It is already known that lesions in the organization of the nuclear envelope (NE) negatively affects the stability of the genome functioning, transport of molecules between the nucleus and the cytoplasm, as well as the process of cell division. In previous studies we demonstrated the atypical interaction of ER membranes with the outer nuclear membrane (ONM) at the prometaphase stage, leading to the formation of 4-layered membranes and a disassembly delay of the NE. Our current study is focused on the ultrastructural organization of Drosophila D11 cells, which shows a significant decrease in the number of dividing cells. Our TEM analysis demonstrated that the nuclei of many cells contain numerous microtubules in the nucleoplasm, slightly compacted chromosomes and an atypical NE with extended folds and outgrowths shaped like 4-layered membranes. These structures represent membrane complexes consisting of inner nuclear membranes (INM) layers close attached to each other. The formation of multilayer fragments from adherent outgrowths of the NE was previously observed when the lamina protein Lam or the insect-specific protein KUGELKERN was overexpressed. According to these data we suggest that the low mitotic index of Drosophila D11 cells division is associated with misregulation of the mitosis process, possibly due to imbalance in the expression of genes encoding lamina proteins, which stimulates the synthesis and elongation of the nuclear membrane without disassembling it. Excessive NE membranes form loops and folds protruding to the cytoplasm and sticking together due to mutual fusion of the INMs forming the quadruple structures.

Structural сomputational Biology sectionStudy of mutagenic properties of PEG-internferon-О»1

Study of mutagenic properties of PEG-internferon-О»1

Poster (download)

[pdf-embedder url=”https://bgrssb.icgbio.ru/wp-content/uploads/2020/07/320.pdf”]
Larisa A. Oleynik1
1Research Institute of Clinical and Experimental Lymphology – a branch of the Institute of Cytology and Genetics of Siberian Branch of Russian Academy of Sciences, larisaoleynik81@gmail.com

The relevance of this project is due to the ability to create a domestic highly effective, safe and inexpensive drug based on pegylated interferon lambda (PEG-interferon-О»1). Therefore, it is very important to conduct a preclinical study of the mutagenic properties of the drug based on PEG-interferon-О»1 in experimental animals and in the somatic mosaic test system

Structural сomputational Biology sectionConsideration of pathogenicity of nsSNVs in CDKN2A gene, as a new tumor marker for leukemia, using bioinformatics methods

Consideration of pathogenicity of nsSNVs in CDKN2A gene, as a new tumor marker for leukemia, using bioinformatics methods

Farzaneh Ghasemi1, Mohammad Mehdi Heidari2, Mehri Khatami3, Yuriy L. Orlov4
1Department of Biology, Faculty of science,Yazd University, Yazd, Iran, heidarimm@yazd.ac.ir
2Department of Biology, Faculty of science,Yazd University, Yazd, Iran, heidarimm@yazd.ac.ir
3Department of Biology, Faculty of science,Yazd University, Yazd, Iran, heidarimm@yazd.ac.ir
4I.M.Sechenov First Moscow State Medical University, Moscow, Russia, orlov@bionet.nsc.ru

CDKN2A as a tumor suppressor gene (TSG) encodes p14 and p16 that they are tumor suppressor proteins and cell cycle regulators. Downregulation of these proteins causes various cancers. Sequence deletions or promoter hypermethylation lead to downregulation of these proteins. Also, point mutations can be caused malfunction or dysfunction of proteins. The aim of this study is definition of pathogenicity of non-synonymous single nucleotide variants (nsSNVs). We study three nsSNVs including rs104894095, rs786204195 and rs104894098 from NCBI/dbSNP databank. Then, these nsSNVs are considered by bioinformatics tools such as SIFT, PolyPhen-2, I-Mutant2.0, PANTHER, P-Mut, ExPASy/ProtScale, PEPTIDE 2.0 web server and PyMOL software. Plot of hydrophobicity of rs104894098 (V126D) is significantly changed. Also, we study hydrogen bonds length and atom distances in Aspartic acid substituted Valine in position 126 by PyMOL software. These parameters are compared with wild type protein. Finally, we find that rs786204195 and rs104894095 have destructive effects. But, rs104894098 (V126D) is deleterious because polar contacts, protein stability and hydrophobicity are changed in mutant form. This theory should be proved with experimental studies.

Structural сomputational Biology sectioneasyAmber: a step away from inefficient ”static” approaches towards a deeper understanding of protein dynamics

easyAmber: a step away from inefficient ”static” approaches towards a deeper understanding of protein dynamics

Dmitry Suplatov1, Yana Sharapova2, Vytas Е vedas3
1Belozersky Institute of Physicochemical Biology, Lomonosov Moscow State University, Moscow, Russia, d.a.suplatov@belozersky.msu.ru
2Belozersky Institute of Physicochemical Biology, Lomonosov Moscow State University, Moscow, Russia, sharapova@belozersky.msu.ru
3Belozersky Institute of Physicochemical Biology and Faculty of Bioengineering and Bioinformatics, Lomonosov Moscow State University, Moscow, Russia, vytas@belozersky.msu.ru

Molecular dynamics (MD) can improve the success rate of in silico tools for drug discovery and protein engineering by accounting for protein structure flexibility/plasticity and predicting the time-dependent behavior of a molecular system, but requires specialized training and skills, what impedes practical use by many investigators. We have developed easyAmber – a comprehensive toolbox to automate the MD routines implemented in the Amber package, freely available at https://biokinet.belozersky.msu.ru/easyAmber.

Structural сomputational Biology sectionModelling of Nef Interaction with ABCA1 Revealed Potential Binding Sites For Inhibitor Compounds

Modelling of Nef Interaction with ABCA1 Revealed Potential Binding Sites For Inhibitor Compounds

Poster (download)

[pdf-embedder url=”https://bgrssb.icgbio.ru/wp-content/uploads/2020/07/508.pdf”]
Anastasia A. Anashkina1, Yaroslav V. Tkachev2, Alexei A. Adzhubei3
1EIMB RAS, Moscow, Russia, nastya@eimb.ru
2EIMB RAS, Moscow, Russia, yat@eimb.ru
3EIMB RAS, Moscow, Russia, alexei.adzhubei@eimb.ru

The effect of HIV-1 Nef protein on the demyelination of central nervous system cells is mediated by its effect on the cholesterol transporter protein ABCA1. To determine the possible interactions of Nef-ABCA1, an expert model of the cytoplasmic fragment ABCA1 was constructed and modelling of the reciprocal binding sites in the Nef and ABCA1 structures was carried out. This made it possible to determine the interface for the interaction of proteins and localize binding sites in them.

Structural сomputational Biology sectionBeta-Bends As An Example Of Conformationally Predetermined Segments Of Protein. Conditions Of Stabilization Of The Structure And Role Of Context

Beta-Bends As An Example Of Conformationally Predetermined Segments Of Protein. Conditions Of Stabilization Of The Structure And Role Of Context

Poster (download)

[pdf-embedder url=”https://bgrssb.icgbio.ru/wp-content/uploads/2020/07/509.pdf”]
Anastasia A. Anashkina1, Vladimir O. Chekhov2, Ivan Yu. Torshin3, Leonid A. Uroshlev4, Natalia G. Esipova5, Vladimir G. Tumanyan6
1EIMB RAS, Moscow, Russia, nastya@eimb.ru
2EIMB RAS, Moscow, Russia, bock@eimb.ru
3FIC IU RAS, Moscow, Russia, tiy135@yahoo.com
4IGG RAS, Moscow, Russia, leoniduroshlev@gmail.com
5EIMB RAS, Moscow, Russia, nge@eimb.ru
6EIMB RAS, Moscow, Russia, tuman@eimb.ru

Conformations of the local protein structures is determined by the balance of their own energy characteristics and the context (flanking regions). The conformation of a given fragment becomes predetermined if the contribution of the context is clearly defined. Beta bends were chosen as the object of the study due to availability of formalised classification of this structure, small number of variables that determine the conformation of a segment, as well as the beta bends high prevalence in the three-dimensional structures of proteins. Using the PDB data, a complete cluster analysis of the conformationally predetermined beta-bend segments of the four main types was performed. Statistical data on the conformational parameters, amino acid composition and the amino acid sequences in beta-bends and their flanking regions were summarized. Factors have been established that stabilize the beta bend (additional hydrogen bonds between the residues involved in the bend) and the beta hairpin, flanking the bend (presence of a conformationally stable peptide). The existence of such stabilizing hydrogen bonds is confirmed by quantum chemical calculations of the energy of the fragment including bending. Stabilization of the hairpin neck is achieved by a conformationally stable hexapeptide in the conformation of the beta strand that is included in the structure, which is also confirmed by the method of denaturing molecular dynamics.

Structural сomputational Biology sectionStatus of Methylation and Transcriptional Activity of Ecdysone Receptor EcR Gene in the Colorado Beetle Leptinotarsa decemlineata Say after application of S-adenosylmethionine

Status of Methylation and Transcriptional Activity of Ecdysone Receptor EcR Gene in the Colorado Beetle Leptinotarsa decemlineata Say after application of S-adenosylmethionine

Yuri Nikonorov1, Tansulpan Akhmetkireeva2, Galina Benkovskaya3
1Institute of Biochemistry and Genetics Ufa Federal research centre of RAS Russia, griffinriders@mail.ru
2Institute of Biochemistry and Genetics Ufa Federal research centre of RAS Russia, tansulpan.ufa@gmail.com
3Institute of Biochemistry and Genetics Ufa Federal research centre of RAS Russia, bengal2@yandex.ru

Motivation and Aim: Gene of ecdysone receptor coding the protein EcR belongs to superfamily of nuclear steroid receptors, which has an evident domain structure and is of great importance for insect development and reproducing [1]. In cells of different tissues protein EcR presents as a combination of its isoforms coded by some variants of mRNA generated consequently by alternative splicing and change in isoforms balance has phenotypical exhibition [2]. In the Colorado beetle Leptinotarsa decemlineata Say two variants of mRNA coding A and B1 isoforms with tissue-specific character of their number variations are described [3]. Our aim is the definition of DNA methylation character in separate loci of gene EcR coding region in the Colorado beetle, investigation of environmental effects and detection of correlation between DNA methylation and transcriptional activity of EcR gene.Methods and Algorithms: Adult Colorado beetles sampled in potato plantation were used as an object.  The source of methyl groups (Heptral –  S-adenosylmethionine, SAM, Abbott Laboratories GmbH, Germany) was applied as suspension (80 mg/10 ml of water) for treatment of fresh potato leaves intended for beetles feeding. DNA and RNA were extracted from tissues of thorax and gonads of adults by phenol-detergent method. The presence of 5-methylcytosine in Colorado beetles DNA was determined by MSRE-PCR (methyl-sensitive PCR). Transcriptional activity of genes of ecdysone receptor EcR, DNA-methylase Dnmt1 and protein transporter of juvenile hormone Juv was evaluated by qRT-PCR with reference gene RP18.Results: The presence of methylated cytosine in DNA coding the regions of EcR gene in the L. decemlineata Say is of a specific character:  DNA site for HpaII restrictase in exon distinctive for B1 isoform degraded completely under hydrolysis in all cases, i.e. it is constantly demethylated. Considerable part of DNA in exons specific for A isoform and constant for both isoforms is methylated permanently in a varying degree. In two months the addition of methyl group source (SAM) to food caused decrease of methylation level in coding region of EcR gene in adults of both sexes.  Content of mRNA of EcR gene in cells of thorax increased 6,1–fold  in males and 2,2-fold in females; in gonads it increased 7,7-fold and 9,1- fold respectively. The ratio of mRNA variants coding A and B1 isoforms changed to prevalence of A-isoform in muscles as well as in gonads in males and females. At the same time mRNA content of Dmnt1gene reduced to a certain degree and the content of mRNA of Juv gene increased dramatically, especially in female gonads.  Similar but more expressed changes in transcriptional activity of these genes were observed right after feeding beetles by nontreated by SAM potato leaves: in an hour after feeding we noted more than two-fold decrease of mRNA of Dnmt1 gene content and more than 10-fold increase of mRNA of Juv gene content. However in this case transcriptional activity of EcR gene decreased 10-fold.Conclusion: Effect of SAM addition to food is of long-term character exhibited as change of methylation status and expression of EcR gene in the Colorado beetle.  We suggest that methylation of DNA takes part in regulation of mRNA splicing of EcR gene. A considerable part of methyl group donors most probably includes in juvenile hormone metabolism.  Initiation of this process activated by SAM treatment leads to deficit of endogenic donors of methyl groups the consequence of which is the phenomenon of DNA demethylation.Acknowledgments Investigations was partially funded by RFBR № 17-44-020347r_а. 

References

  [1]  L. M. Riddiford,  P. Cherbas, J. W. Truman, “Ecdysone receptors and their biological actions”, Vitam. Horm.,  2000, vol. 60, pp. 1-73.[2] W.S. Talbot, E.A. Swyryd, D.S.  Hogness, “Drosophila tissues with different metamorphic responses to ecdysone express different ecdysone receptor isoforms”, Cell, 1993, vol. 93,  pp. 1323–1337.[3] T. Ogura,  C. Minakuchi, Y. Nakagawa,  G. Smagghe, and H. Miyagawa, “Molecular cloning, expression analysis and functional confirmation of ecdysone receptor and ultraspiracle from the Colorado potato beetle Leptinotarsa decemlineata”, FEBS J.,  2005, vol. 272 (16), pp. 4114-4128

Structural сomputational Biology sectionAccuracy of disorder predictors results – comparison on DisProt DB data

Accuracy of disorder predictors results – comparison on DisProt DB data

Nenad Mitić1, Gordana Pavlović-Lažetić2, Saša Malkov3, Miloš Beljanski4, Mirjana Maljković5, Ana Jelović6
1Faculty of Mathematics ,University of Belgrade, Belgrade, Serbia, nenad@matf.bg.ac.rs
2Faculty of Mathematics ,University of Belgrade, Belgrade, Serbia, gordana@matf.bg.ac.rs
3Faculty of Mathematics ,University of Belgrade, Belgrade, Serbia, smalkov@matf.bg.ac.rs
4Insistute for General and Physical Chemistry University of Belgrade Belgrade, Serbia, mbel@matf.bg.ac.rs
5Faculty of Mathematics ,University of Belgrade, Belgrade, Serbia, mirjana@matf.bg.ac.rs
6Faculty of Transport and Traffic Engineering University of Belgrade Belgrade, Serbia, a.jelovic@sf.bg.ac.rs

Some results of accuracy and inconsistencies of disordered predictors prediction compared on proteins regions from DisProt database are presented. Results are compared for more than 20 predictors applied on different versions of DisProt database.