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Dive into the research topics where Sultan Ch. Agalarov is active.

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Featured researches published by Sultan Ch. Agalarov.


Journal of Molecular Biology | 1983

Shape and compactness of the isolated ribosomal 16 S RNA and its complexes with ribosomal proteins

Igor N. Serdyuk; Sultan Ch. Agalarov; Svetlana E. Sedelnikova; Alexander S. Spirin; Roland P. May

X-ray scattering, neutron scattering and velocity sedimentation techniques were used for studies of ribosomal 16 S RNA in the isolated state and in different complexes with ribosomal proteins. The neutron scattering curve of the ribosomal 30 S subparticle in 42% 2H2O where the protein component is contrast-matched, was taken as a standard of comparison characterizing the dimensions and shape of the 16 S RNA in situ. The following deductions result from the comparisons. The shape of the isolated 16 S RNA at a sufficient Mg2+ concentration (e.g., in the reconstruction buffer) is similar to that of the 16 S RNA in situ, i.e. in the 30 S particle, but it is somewhat less compact. The 16 S RNA in the complex with protein S4 has a shape and compactness similar to those of the isolated 16 S RNA. The 16 S RNA in the complex with four core proteins, namely S4, S7, S8 and S15, has a shape and compactness similar to those of the isolated 16 S RNA. The six ribosomal proteins S4, S7, S8, S15, S16 and S17 are necessary and sufficient for the 16 S RNA to acquire a compactness similar to that within the 30 S particle. The general conclusion is that the overall specific folding of the 16 S RNA is governed and maintained by its own intramolecular interactions, but the additional folding-up (about one-fourth of the linear size of the whole molecule) or the stabilization of the final compactness requires some ribosomal proteins.


FEBS Letters | 1987

Proteins of the Thermus thermophilus ribosome Purification of several individual proteins and crystallization of protein TL7

S.E. Sedelnikova; Sultan Ch. Agalarov; M.B. Garber; Marat Yusupov

The procedure of selective removal of eight proteins from the 50 S ribosomal subunit of the extreme thermophilic bacterium Thermus thermophilus has been developed based on extraction at 60°C in the presence of 0.5 M or 1 M NH4Cl and 50% ethanol. CM‐Sepharose CL column chromatography of the protein mixture under non‐denaturing conditions yielded five proteins with a purity of 95% or higher. Crystals of one of these proteins, namely TL7 (probably an analog of L6 protein from the Escherichia coli ribosome) have been obtained using the ‘hanging drop’ method with ammonium sulphate as a precipitant.


Scientific Reports | 2015

Internal translation initiation and eIF4F/ATP-independent scanning of mRNA by eukaryotic ribosomal particles

Sultan Ch. Agalarov; Pavel A. Sakharov; Dina Kh. Fattakhova; E. A. Sogorin; Alexander S. Spirin

The recombinant mRNAs with 5′-untranslated region, called omega leader, of tobacco mosaic virus RNA are known to be well translated in eukaryotic cell-free systems, even if deprived of cap structure. Using the method of primer extension inhibition (toe-printing), the ribosomal particles were shown to initiate translation at uncapped omega leader when its 5′-end was blocked by a stable RNA-DNA double helix, thus providing evidence for internal initiation. The scanning of the leader sequence and the formation of ribosomal 48S initiation complexes at the initiation AUG codon occurred in the absence of ATP-dependent initiation factor eIF4F, as well as without ATP. The latter results implied the ability of ribosomal initiation complexes for ATP-independent, diffusional wandering (also called bi-directional movement) along the leader sequence during scanning.


FEBS Letters | 2006

Ribosomal protein S1 induces a conformational change of the 30S ribosomal subunit

Sultan Ch. Agalarov; Artem A. Kalinichenko; Aigar Kommer; Alexander S. Spirin

A comparative study of the 30S ribosomal subunit in the complex with protein S1 and the subunit depleted of this protein has been carried out by the hot tritium bombardment method. Differences in exposure of some ribosomal proteins within the 30S subunit depleted of S1 and within the 30S–S1 complex were found. It was concluded that protein S1 binds in the region of the neck of the 30S ribosomal subunit inducing a conformational change of its structure.


Scientific Reports | 2016

Inter-polysomal coupling of termination and initiation during translation in eukaryotic cell-free system

E. A. Sogorin; Sultan Ch. Agalarov; Alexander S. Spirin

The recording of the luciferase-generated luminescence in the eukaryotic cell-free translation system programmed with mRNA encoding firefly luciferase (Luc-mRNA) showed that the addition of free exogenous mRNAs into the translation reactor induces the immediate release of the functionally active protein from the polyribosomes of the translation system. The phenomenon did not depend on the coding specificity of the added free mRNA. At the same time it depended on the “initiation potential” of the added mRNA (including the features that ensure the successful initiation of translation, such as the presence of the cap structure and the sufficient concentration of the added mRNA in the translation mixture). The phenomenon also strictly depended on the presence of the stop codon in the translated mRNA. As the above-mentioned features of the added mRNA imply its activity in initiation of a new translation, the experimental data are found in agreement with the scenario where the molecules of the added mRNA interact by their 5′-ends with terminating and recycling ribosomes, stimulating the release of the complete polypeptides and providing for the initiation of a new translation.


Biochemistry | 2015

Formation of New Polysomes on Free mRNAs in a Cell-Free Translation Systems Is Accompanied by Partial Disassembly of Previously Formed Polysomes

E. A. Sogorin; Sultan Ch. Agalarov; Alexander S. Spirin

A method for detection of the fluorescence-labeled mRNA in translating ribosomal complexes has been developed. It is demonstrated that in the working cell-free translation system with preformed polysomes, formation of new polysomes on free mRNA takes place. For the first time, it is shown that the process is accompanied by partial disassembly of the previously formed polysomes. This result is interpreted as an indication of the direct relationship between processes of translation termination of polysomal ribosomes and translation initiation of free mRNAs.


Methods of Molecular Biology | 2016

Reconstitution of Functionally Active Thermus thermophilus 30S Ribosomal Subunit from Ribosomal 16S RNA and Ribosomal Proteins

Sultan Ch. Agalarov; Marat Yusupov; Gulnara Yusupova

In vitro reconstitution systems of ribosomal subunits from free ribosomal RNA and ribosomal proteins are helpful tool for studies on the structure, function and assembly of ribosome. Using this system mutant or modified ribosomal proteins or ribosomal RNA can be incorporated into ribosomal subunits for studying ribosome structure and function. Developing the protocol for reconstitution of 30S subunits from an extreme thermophilic bacterium Thermus thermophilus can be beneficial especially for structural studies, as proteins and nucleic acids from this organism are very stable and crystallize easier than those from mesophilic organisms.


FEBS Journal | 1999

Independent in vitro assembly of all three major morphological parts of the 30S ribosomal subunit of Thermus thermophilus

Sultan Ch. Agalarov; Olga M. Selivanova; Zheleznyakova En; L. A. Zheleznaya; Nicholas I. Matvienko; Alexander S. Spirin


Biochemical and Biophysical Research Communications | 2011

Insight into the structural organization of the omega leader of TMV RNA: The role of various regions of the sequence in the formation of a compact structure of the omega RNA

Sultan Ch. Agalarov; E. A. Sogorin; Nikolay E. Shirokikh; Alexander S. Spirin


FEBS Journal | 1980

Small differences in tryptophan fluorescence spectra of 'sodium' and 'potassium' forms of (Na+, K+)-dependent adenosinetriphosphatase.

Alexander B. Chetverin; Sultan Ch. Agalarov; Viktor I. Emelyanenko; Edward A. Burstein

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E. A. Sogorin

Russian Academy of Sciences

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Aigar Kommer

Russian Academy of Sciences

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I.A. Eliseikina

Russian Academy of Sciences

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Igor N. Serdyuk

Russian Academy of Sciences

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L. A. Zheleznaya

Russian Academy of Sciences

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