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Biomedical subjects

D Markov

Publications and source records attributed to D Markov.

At least 55 records · Page 3Linked to original sources

Is the nuclear matrix the site of DNA replication in eukaryotic cells?

Four types of experiment were carried out to test the recently proposed model of matrix-bound replication in eukaryotic cells. In experiments with pulse-labelling we found preferential association of newly replicated DNA with the matrix only when the procedure for isolation includes first high-salt treatment of isolated nuclei and then digestion with nucleases, or when prior to digestion the nuclei have been stored for a prolonged time. In both cases, however, evidence was found that this preferential association is due to a secondary, artifactual binding of the newly replicated chromatin region to the matrix elements. Pulse-chase experiments and experiments with continuous labelling were carried out to answer the question whether during replication the DNA is reeled through the replication complexes, i.e., whether newly replicated DNA is temporarily or permanently associated with the matrix. The results showed that at that time the matrix DNA does not move from its site of attachment. Since, according to the model of matrix-bound replication, the forks are assumed to be firmly anchored to high-salt resistant proteinaceous matrix structures, the chromatin fragments isolated with endonuclease not recognizing newly replicated DNA and purified by sucrose gradient centrifugation should be free of replication intermediates. The electronmicroscopic analysis of such fragments revealed the existence of intact replication micro-bubbles. Moreover, the fragments with replication configurations appeared as smooth chromatin fibres not attached to elements characteristic for the matrix. All these experiments suggest that the nuclear skeleton is not a native site of DNA replication in eukaryotic cells.

Animals↗

Evidence for the existence in the nuclei of Friend cells of a new type of ribonucleoprotein network.

We have isolated fragments of a novel nuclear structure exhibiting the morphological and biochemical characteristics of a ribonucleoprotein network. Under transmission electron microscopy it is visualized as irregularly interconnected branches assembled by tightly packed particles with sizes between 100A and 300A. RNA extracted from this structure shows a complex pattern: as well as ribosomal 28 S and 18 S RNA, small amounts of heterogeneous nuclear RNA and small nuclear RNA are also present. The protein composition of the network indicates a strong domination of ribosomal polypeptides. This fact, considered together with the sedimentation characteristics of the prevailing type of particles isolated directly from the network, supports the conclusion that ribosomal particles are the representative particulate elements. Further electrophoretic analysis of the protein has pointed out that it also contains a significant number of acidic polypeptides. Control experiments have suggested that the site of origin of the network fragments studied is not nucleolar: the fragments are released during extraction, most probably from the nuclear periphery. It is not yet clear whether this structure is localized only at the nuclear periphery or represents an extensive structure, occupying the entire volume of the nucleus. It is speculated that the network is involved in the extranucleolar transport and maturation of ribosomes.

Autoradiography↗

[Histomorphological changes in the lymphoid and internal organs of adult guinea pigs in anaphylactic shock, induced 8 months after thymectomy].

Anaphylactic shock was induced in adult guinea pigs eight months after operative thymectomy. It was established that thymectomy caused depletion of lymphoid tissue with atrophy of lymphyc follicles and disappearence of germinative centers in the spleen, mesenterial lymph gland and intestinal lymph tissue. There was no anaphyactic shock in 81.2% of the thymectomized animals as a result of the inhibited immunoallergic reactivity, but dystrophic and inflammatory changes in their parenchymatous organs were more frequent and graver in comparison with the nonthymectomized animals.

Adrenal Glands↗