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Iu N Utkin

Publications and source records attributed to Iu N Utkin.

At least 19 recordsLinked to original sources

[Photoactivated derivatives of peptide and protein ligands in the studies of neuroreceptors].

The application of photoactivatable derivatives for studies of different types of neuroreceptors belonging to two superfamilies, G-protein dependent receptors and ligand-gated ionic channels, is discussed. Studies of the structure of voltage-gated and ion-gated channels with the use of specific photoactivatable derivatives of neurotoxins are also described. Possibilities and prospects for the application of photoactivatable ligands in studies of the spatial structure of neuroreceptors are reviewed.

Animals↗

[alpha-Neurotoxins and alpha-conotoxins--nicotinic cholinoreceptor blockers].

The review is devoted to the competitive blockers of different nicotinic acetylcholine receptors, alpha-neurotoxins from snake venoms, and alpha-conotoxins from marine snails of the Conidae family. The relationship between the structure and function of these toxins is discussed. Recent data on the mechanism of alpha-neurotoxin and alpha-conotoxin interaction with the nicotinic acetylcholine receptor are presented.

Amino Acid Sequence↗

[Antagonists of the tachykinin receptors].

Antagonists of the tachykinin receptors, which have been most widely used in scientific investigations during the past decade (up to 1995 inclusive), are reviewed. The structures and peculiar characteristics of peptide and nonpeptide compounds of this class are described. Applications of these antagonists in the search for new subtypes of tachykinin receptors and for structure-function studies are discussed.

Animals↗

[Secondary structure and conformational heterogeneity of Naja naja oxiana cytotoxin II].

The proton resonances of cytotoxin II from Naja naja oxiana were sequentially assigned in 2D 1H NMR spectra for all of its 60 amino acid residues of both major and minor components of the spectra. The presence of the minor component was shown to be due to a conformational heterogeneity of the cytotoxin. The proton-deuterium exchange rates of amide groups were measured in 2H2O at a pH of 5.0 and at 10 degrees C. Experimental data obtained (d-connectivities, H-NC alpha-H coupling constants and long-range NOEs) allowed for the determination of the secondary structure of the two cytotoxin conformers. Both conformer structures contain two antiparallel beta-sheets. The first beta-sheet involves two antiparallel beta-strands comprising the residues 2-5 and 10-13. The second sheet involves three antiparallel strands consisting of the residues 20-26, 35-39, and 49-55; its peripheral beta-strands are connected by cross-over. The most striking structural difference between these conformers is the nature of the beta-turn 6-9, which has trans- and cis-forms of the Val7-Pro8 peptide bond in the major and minor conformer, respectively. The structures of other beta-turns, some of which are ascribed to standard types, and the C-termini are almost the same for the both conformers.

Amino Acid Sequence↗

[Effective binding of alpha-bungarotoxin with the solubilized alpha-subunit of Torpedo californica acetylcholine receptor].

alpha-Subunit of the Torpedo californica nicotinic acetylcholine receptor was isolated by preparative SDS-PAGE followed by reversed-phase HPLC on a C4 column in an acetonitrile-isopropanol gradient in water. After removal of the organic solvents and solubilization in beta-octylglucoside, the purified alpha-subunit binds alpha-bungarotoxin with high affinity (Kd 28 nM).

Animals↗

[Fragments 183-198 and 125-145 of the alpha-subunits of the Torpedo californica nicotinic acetylcholinergic receptor binds alpha-bungarotoxin and neurotoxin II from Naja naja oxiana].

Interaction of the mono[125I]iodinated alpha-bungarotoxin and neurotoxin II Naja naja oxiana with the synthetic peptides corresponding to the fragments of the alpha-subunit of nicotinic acetylcholine receptor from Torpedo californica was studied. It was found that both toxins bind to the fragments alpha 186-198, alpha 183-198 and alpha 125-145 adsorbed to the 96-well P.E.T.G. assay plates (COSTAR). Acm-groups on Cys residues did not prevent toxin binding by the peptides studied. Determination of the binding parameters showed that alpha-bungarotoxin interacts with fragment alpha 125-145 less effectively than neurotoxin II. The data obtained demonstrate the presence of different toxin-binding sites on alpha-subunit and confirm the model of multipoint neurotoxin-receptor interaction.

Amino Acid Sequence↗

[Interaction of substance P receptor from rat brain with antibodies to its synthetic fragments and to substance P].

The peptides which correspond to the fragments 55-64, 182-192, 225-236 and 236-245 (P1-P4, respectively) of the rat brain substance P receptor were synthesized. Antibodies (Ab1-Ab4, respectively) against the KLH-conjugates of these peptides were raised and purified by affinity chromatography. None of the antibodies inhibited the Bolton-Hunter labelled substance P, [125I]BH-SP, binding to the rat brain membranes. On the other hand, Ab2 and Ab3 recognition of the SP receptor was found in ELISA experiments: the CHAPS--solubilized rat brain membranes could inhibit binding of these antibodies to the immobilized P2 and P3. Antibodies Ab1-Ab4 did not interact with the CHAPS-solubilized DDS cross-linked complex of the [125I]BH-SP and SP receptor. However, this complex retained the capacity of interacting with the affinity-purified antibodies against SP and was purified by sequential gel-permeation HPLC and protein A-chromatography.

Amino Acid Sequence↗

[Structure of peptide fragments of the complex (Lys(Abz)26) neurotoxin II from Naja naja oxiana cross-linked with the nicotinic acetylcholine receptor from Torpedo californica].

After irradiating the acetylcholine receptor complex with the title neurotoxin derivative, the labeled delta-subunit was separated by preparative SDS-PAGE, reduced-carboxymethylated and cleaved with LysC endoproteinase. One of the radioactive peptides isolated by HPLC was further purified by electrophoresis in a tricin gel. Edman degradation of the radioactive fractions yielded the sequence of the delta-subunit fragment starting from Phe148. The AspN-cleavage of the radioactive peptide from the LysC digest gave on HPLC a radioactive peak which eluted similarly to peptide 33-44 generated by LysC/AspN-cleavage of 125I-neurotoxin II. In model experiments, irradiation of the photoactivable derivative was found to produce a heterogeneous mixture of reaction products. Unusually low initial and repetitive yields were observed for neurotoxin II and its fragments containing the photolabeled and radiolabeled residues. These results might explain why the neurotoxin sequence was not detected on Edman degradation of the cross-linked products available at a low picomole level.

Amino Acid Sequence↗

[Preparation and characteristics of a tritiated derivative of CP-96,345--a nonpeptide antagonist of the substance P receptor with a high specific radioactivity].

[3H]CP-96.345 with the specific radioactivity of 84.2 Ci/mmol has been prepared from CP-96.345 by the high-temperature solid state isotopic exchange. The tritiated compound was equipotent with the parent antagonist in inhibiting the iodinated substance P binding to brain membranes from various species. Direct binding of [3H]CP-96.345 was detected by radioligand analysis using the striatum-enriched membranes from the guinea-pig brain.

Animals↗

[Expression of a gene fragment from the alpha-subunit of the acetylcholine receptor from Torpedo californica in Saccharomyces cerevisiae].

A fragment of the AChR alpha-subunit gene from Torpedo californica (about 800 bp) was joined in frame with a synthetic duplex, coding for a changed leader peptide of the Kluyveromyces lactis killer toxin under the control of the reconstructed glyceraldehyde-3-phosphate dehydrogenase gene promoter in the pUC8 vector. Translation termination codons in all frames were inserted as a part of a self-complementary oligodeoxynucleotide to the Eco47III site (807 bp from the start of the gene). Vector pJDAch was constructed by cloning the expression cassette between the BamHI and HindIII sites in the multicopy yeast plasmid pJDB207. Yeast cells harbouring the pJDAch vector produced mainly an N-glycosylated fragment of the acetylcholine receptor alpha-subunit, detected by means of [125I]-alpha-bungarotoxin. The fragment's location in the membrane fraction after disruption of the yeast cells simplified its isolation.

Amino Acid Sequence↗

[Conserved and variable segments of amino acid sequences in alpha-subunits of nicotinic acetylcholine receptors and alpha-bungarotoxin-binding proteins].

A comparative study has been carried out of homologous amino acid sequences of alpha-subunits of acetylcholine receptors (AChR) and related proteins classified into three groups: (i) alpha-bungarotoxin-binding alpha-subunits of nicotine AChR from vertebrate muscles and electrical organ of the skate; (ii) alpha-bungarotoxin-binding alpha-subunits of neuronal AChR from chicken and rat brain and (iii) alpha-bungarotoxin-binding alpha-subunit of chicken brain proteins. The experimental results were plotted as intergroup variability profiles obtained by comparison of all the sequences within one group with each of the sequences in the other group. All of the local variability profiles appeared to be similar and contained both highly conservative and highly variable sites. To the former one may relate the transmembrane segments M1, M3 and, particularly, M2 as well as the 81-100 domain comprising several links pertaining to the ligand-binding domain in AChR. Domains 153-171 and 177-197 comprising most of the identified links involved in the binding of low molecular weight agonists and of alpha-bungarotoxin appeared to be highly variable ones.

Amino Acid Sequence↗

[A new immunochemical method for detecting substance P receptors based on the biotin-streptavidin system].

A novel method for detecting the membrane receptors of Substance P (SP) has been developed. The method does not require radioactive derivatives of SP and is based on quantitation of specifically bound biotinylated SP (Bt-SP), the analysis being performed after destruction of the ligand-receptor complex in acidic conditions and Bt-SP extraction into solution. The acidic extract from the Bt-SP-membrane complex after neutralization is added to immulon microELISA plate coated with affinity purified anti-SP-antibodies. The sensitivity of subsequent detection of Bt-SP enhances by using a new type of the streptavidin conjugate with a polymeric form of horseradish peroxidase. Enzyme immunoassay conditions were optimized using [125I]-labelled SP derivative. The developed method allows the determination of femtomoles of SP in a sample and has a sensitivity comparable to that of radioligand analysis.

Amino Acid Sequence↗

[Effect of toxic components of snake venoms on binding of substance P with rat brain membranes].

Ion-exchange HPLC is used for purification of the snake venom alpha-neurotoxins, chi-bungarotoxin, cytotoxins, and phospholipases A2. Among these purified polypeptides, phospholipases A2 are found to be the most potent in inhibiting the substance P binding to rat brain membranes, Ki approximately 10(-8) M. Other toxins are weak inhibitors (Ki greater than or equal to 10(-4)-10(-5) M), earlier data on the inhibiting activity of alpha-bungarotoxin being caused by the commercial preparations' contamination with phospholipase A2.

Animals↗

[Tachykinin receptors in the rat brain bind alpha-bungarotoxin].

alpha-Bungarotoxin was found to inhibit effectively the binding of 125I-labelled substance P and eledoisin to membrane and to solubilize preparations of the rat brain. Other postsynaptic neurotoxins exerted similar but less pronounced influence on the interaction of tachykinins with their receptors. The obtained results suggest that some alpha-bungarotoxin-binding polypeptides in brain are components of tachykinin receptors.

Amino Acid Sequence↗

[Specific binding of muramyl peptides with rat brain membranes].

A tripeptide analogue of N-acetylglucosaminyl-(beta 1-4)-N-acetylmuramyl dipeptide (GMDP) which contains C-terminal Lys residue (GMDP-Lys) was prepared. Its reaction with N-hydroxysuccinimidyl 3-(4-hydroxyphenyl)propionate (BH) followed by iodination gave the 125I-labelled derivative with specific activity ca. 2000 Ci/mmol. This compound was shown to bind specifically with rat brain membranes, dissociation constant Kd = 3.1 +/- 0.9 nM, binding capacity Bmax = 11.0 +/- 12 fmol/mg protein. Binding was inhibited by the non-radioactive iodinated derivative, unmodified GMDP-Lys and GMDP. Thus, the specific binding of immunoactive myramyl peptides with brain has been demonstrated for the first time.

Acetylmuramyl-Alanyl-Isoglutamine↗