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Biomedical subjects

M V Semenov

Publications and source records attributed to M V Semenov.

9 recordsLinked to original sources

beta-Arrestin1 modulates lymphoid enhancer factor transcriptional activity through interaction with phosphorylated dishevelled proteins.

One aspect of the function of the beta-arrestins is to serve as scaffold or adapter molecules coupling G-protein coupled receptors (GPCRs) to signal transduction pathways distinct from traditional second messenger pathways. Here we report the identification of Dishevelled 1 and Dishevelled 2 (Dvl1 and Dvl2) as beta-arrestin1 (betaarr1) interacting proteins. Dvl proteins participate as key intermediates in signal transmission from the seven membrane-spanning Frizzled receptors leading to inhibition of glycogen synthase kinase-3beta (GSK-3beta), stabilization of beta-catenin, and activation of the lymphoid enhancer factor (LEF) transcription factor. We find that phosphorylation of Dvl strongly enhances its interaction with betaarr1, suggesting that regulation of Dvl phosphorylation and subsequent interaction with betaarr1 may play a key role in the activation of the LEF transcription pathway. Because coexpression of the Dvl kinases, CK1epsilon and PAR-1, with Dvl synergistically activates LEF reporter gene activity, we reasoned that coexpression of betaarr1 with Dvl might also affect LEF-dependent gene activation. Interestingly, whereas betaarr1 or Dvl alone leads to low-level stimulation of LEF (2- to 5-fold), coexpression of betaarr1 with either Dvl1 or Dvl2 leads to a synergistic activation of LEF (up to 16-fold). Additional experiments with LiCl as an inhibitor of GSK-3beta kinase activity indicate that the step affected by betaarr1 is upstream of GSK-3beta and most likely at the level of Dvl. These results identify betaarr1 as a regulator of Dvl-dependent LEF transcription and suggest that betaarr1 might serve as an adapter molecule that can couple Frizzled receptors and perhaps other GPCRs to these important transcription pathways.

Adaptor Proteins, Signal Transducing↗

[The immunolocalization of the ribosomal gene transcription initiation factor UBF in the interphase and mitosis].

Serum P419 from a patient with rheumatoid arthritis with a high specificity immunolabeling nucleoli in various mammalian cells has been identified. On the Western blots of total cellular proteins or proteins extracted from isolated nucleoli it cross-reacted with a doublet of polypeptides of 97 and 94 kDa. That is why this serum has been concluded to recognize UBF, or RNA polymerase I-specific transcription initiation factor. It was shown that UBF remained bound to the nucleoli or nucleolus organizing regions (NORs) of mitotic chromosomes despite the level of rDNA transcription. Nevertheless, intranucleolar localization of UBF was dramatically changed after partial or complete block of rRNA synthesis. In pycnotic cells positive labeling was found within the whole nucleus and cytoplasm instead of nucleolus. In metaphase UBF molecules are unequally distributed between the particular NORs, whereas in anaphase they are uniformly allocated between the daughter cells.

Animals↗

The RNA polymerase I-specific transcription initiation factor UBF is associated with transcriptionally active and inactive ribosomal genes.

We have characterized an anti-NOR (nucleolar organizer region) serum (P419) from a patient with rheumatoid arthritis and show that it contains antibodies directed against the RNA polymerase I-specific transcription initiation factor UBF. This serum reacts with UBF from a variety of vertebrate cells as revealed both by immunoblotting and by indirect immunofluorescence. We have used the P419 serum to study the intracellular localization of this transcription factor at the light and electron microscopic level. In interphase cells, UBF exhibits a pronounced punctate pattern and is found to be associated with necklace-like structures, which appear to reflect the transcriptionally active state of the nucleolus. Inhibition of rRNA synthetic activity caused either by nutritional starvation or by actinomycin D treatment resulted in a marked decrease in the number and in a significant increase in the size of UBF-positive granules. Under all experimental conditions applied, UBF was exclusively found within the nucleolus and was not released into the nucleoplasm or cytoplasm. During mitosis, UBF was found to be concentrated at the chromosomal NOR indicating that a significant quantity, if not all, of this factor remains bound to the ribosomal transcription units. From this we conclude that UBF is associated both with transcriptionally active and inactive rRNA genes and, therefore, changes in the intracellular localization of UBF are very likely not involved in rDNA transcription regulation.

Animals↗

[Comparative study of the quality of domestic albumin solution and foreign analogs].

The quality and standards of albumin solutions (5, 10 and 20%) made in this country meet the requirements of national specification documentation. This, however, lacks some standards included into European Pharmacopoeia and mandatory for foreign manufacturers (Na and K ions, hemipigments, polymers, thermostability). The comparative tests of the albumin solutions made in Russia and abroad by conventional European standards showed that Russian solutions by some parameters are inferior to foreign samples. This urges improvement of the solution production technology as well as updating technical documents regulating the product quality.

Quality Control↗

[Nuclear antigens detectable with human autoantibodies].

Sera of patients with rheumatic diseases often contain autoantibodies to nuclear antigens. Problems of the specificity of autoantibodies and of their usage for studying nuclear components and of the whole nuclear organization are reviewed.

Antigens↗

[Chromosomal interrelations in the interphase nucleus].

The distribution of prekinetochores in human lymphocytes has been studied by indirect immunofluorescence with autoantibodies against kinetochore. Lymphocyte flattening that allowed a 5-6 increase in their size, was suggested in addition to a method of lymphocyte stretching allowing a 10-fold extension. Prekinetochores in flat and stretched lymphocytes are seen settled down as separate pairs. The equal pattern of staining of these prekinetochores in each pair suggests that homologous chromosomes located in pairs.

Autoantibodies↗

[The identification of kinetochore proteins by using the sera of patients with collagenoses].

Sera of rheumatology patients with antikinetochore autoantibodies are identified. Immunoblot of human cell proteins showed that all the sera contained autoantibodies to kinetochore proteins A and B. In Chinese hamster cells proteins with m. m. 45 kD, 100 kD and 110 kD are presumably kinetochore proteins, whereas in murine cells these are proteins with m. m. 45 kD 85 kD and 100 kD.

Animals↗