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O A Cherepanova

Publications and source records attributed to O A Cherepanova.

7 recordsLinked to original sources

[Revelation and identification of laminin in the structure of plasma membrane of ascitic Zajdela hepatoma cells].

Cell dysdifferentiation during neoplastic transformation is a crucial problem of cell biology and oncology. Antigenic diversion of cancer cells is a typical characteristic of dysdifferentiation. It involves the appearance of antigens which are unusual for normal tissue of this type. Components organospecific for membrane proteins of normal kidney were previously found among plasma membrane proteins of hepatocellular rat tumors, rat hepatocytes after carcinogen treatment, and regenerating liver, respectively. In the present work we showed that a protein with mol. weight about 200 kDa reacting with laminin-1 immunoserum is the basic component of plasma membranes of the rat Zajdela hepatoma cells, which is responsive for organospecific anti-kidney immunoserum in Western blot. A mass-spectrometer analysis of trypsin proteolysis fragments was carried out in SDS-PAGE slices containing the investigated component. The analysis showed the presence of beta1, beta2 and alpha4 laminin chains peptides. The component with mol. weight about 180 kDa, found in the Western blot with laminin-1 immunoserum, was also subjected to the mass spectrometer analysis. As a result, a gamma1 laminin chain was found. An increased amount of laminin was revealed in the ascitic liquid and sera of rat with developed Zajdela hepatoma, in comparison with sera of normal rats. In addition, we found the appearance of laminin on the hepatocyte surface on the 4th day after hepatocarcinogen injection (N-diethylnitrosamine, DENA). Thus, for the first time tumor associated antigens were revealed and identified in the structure of plasma membranes of Zajdela hepatoma cells, being specific to rat kidneys. Our results allow to conclude that in the process of carcinogenesis in rat liver laminin synthesis occurs, which is also characteristic of the rat hepatoma Zajdela cells.

Animals↗

[Interaction of laminin with the plasma membrane components of ascitic Zajdela hepatoma cells].

The laminin affinity chromatography was used for isolating laminin-binding proteins from the plasma membrane of Zajdela hepatoma cells synthesizing laminin. These were components with mol. weights about 80, 67, 60, 55, 52, 48 and 43 kDa. The isolation of laminin integrin receptors from plasma membranes of Zajdela hepatoma cells in the presence of MnCl2 detected only a protein with mol. weight about 80 kDa in EDTA-elution conditions. This protein was identified by mass spectrometry method as the 78 kDa glucose-regulated protein precursor (GRP78). It belongs to the family of 70 kDa heat shock proteins, recently GRP78 was reported to be localized on the surface of different cell types, including hepatocytes.

Amino Acid Sequence↗

[Beta-1 and beta-4 integrins, and laminin 67 kDa receptors in interaction between A431 cells and laminin isoforms ].

Laminins, as basal membrane glycoproteins, are able to stimulate cell adhesion and migration, and to influence gene expression. The laminin molecule has a set of bioactive sites that interact with different integrin and nonintegrin receptors, and, as a result, the reaction of the same cell type to different laminin isoforms may be different. The aim of this study was to determine the contributions of both integrins with beta 1 and beta 4 chains and 67 kDa laminin receptor in the interaction of A431 cells with two laminin isoforms: laminin-1 and laminin-2/4. The obtained data show that integrin alpha 6 beta 4 is more specific for interaction with laminin-2/4 than with laminin-1 and takes part in the stage of attachment of A431 cells to laminin. 67 kDa receptor promotes cell spreading on laminin-2/4 and inhibits cell spreading on laminin-1. An assumption was made about the complex action of receptors for interaction of A431 cells with laminins ("integrin alpha 6 beta 4--67 kDa receptors" complex).

Basement Membrane↗

[Differences in the character of interaction of normal and transformed human keratinocytes with laminin isoforms].

Laminins constitute a family of heterotrimeric glycoproteins of basement membranes. Laminins promote cell adhesion, migration, growth, and differentiation. So far, at least 12 different isoforms of laminin have been known. However, no sufficient knowledge is available on the nature of cell response on different laminins. The study was aimed to compare adhesive properties of two laminin isoforms, laminin-1 and laminin-2/4, with respect to normal (freshly isolated keratinocytes) and transformed (A-431) human skin cells. We have used the following assays: cell adhesion to the substrate covered with laminin isoformes, interaction of latex beads (D = 1 micron) coated with the same proteins with cells in suspension, and a comparative study of the cytoskeleton structure of cells spread on the immobilized laminins. It was demonstrated that laminin-2/4 is a more effective potent promotor of adhesion for both normal keratinocytes and transformed A-431 cells, compared with laminin-1. A comparison of many attached protein-covered beads allowed to estimate a relative quantity of cell surface receptors to laminin isoforms in different cell types. The relative number of receptors to laminin-2/4 on the keratinocyte surface is 7 times higher than that to laminin-1 after a 30 min incubation with cells, and is 6 times higher after 1 hour. As for A-431 cells, their attachment to laminin-2/4 beads is 5 times higher than that to laminin-1-beads after a 1 min incubation, but as early as after 5 min this distinction disappeared, owing to bead internalization. The presence of a specific receptor to laminin-2/4 but not to laminin-1 on the keratinocyte surface has been suggested. Keratin differences in cytoskeleton organization in normal and transformed skin cells spread on the substrates covered with laminin-1 and laminin-2/4 were demonstrated.

Animals↗

[Various effects of laminin-1 and laminin-2/4 on adhesion and migration of cultured human keratinocytes].

The cell-matrix interaction is one of the factors defining the cell behavior in normal and wounded tissues. To determine the function of laminin-2/4, one of components of the skin basement membrane in the process of reepithelization, we studied its interaction with human keratinocytes. The adhesive properties of laminin-2/4 and its effect on keratinocytes migration in vitro were analysed. For comparison with our present investigation, we used the earlier studied laminin-1 from EHS mouse sarcoma. Laminin-2/4 appeared to be a good substrate for human keratinocytes, and this correlates with a greater number of cell surface receptors compared with laminin-1. Laminin-2/4 alone does not stimulate keratinocyte migration, but, in contrast to laminin-1, supports EGF-mediated migration. The obtained results give an insight into the function of laminin-2/4 in normal skin and during wound healing.

Animals↗

[Cell interaction with extracellular proteins during two-phase polymer system formation].

A modified method of investigation of surface properties of cells and proteins with the help of a two-phase polymer system dextran-500/polyethylenglycol-6000 was used. This method is based on changing the kinetics of two-phase system partitioning into phase on adding cells or macromolecules. These changes were registered by measuring the top phase optical density during the system partitioning at 500 nm. Cell lines L (NCTC clone 929), LS and A431, human keratinocytes and platelets, collagen I, laminin-1, laminin-2/4, and fibronectin were studied. The interaction between collagen and all cell types with the formation of complexes takes place during co-partitioning of cells and proteins in the two-phase system. Laminins differ in surface properties and in interaction with cells. Laminin-1 makes preferable complexes with cells of monolayer subline L (NCTC clone 929), but not with cells of suspension subline LS. No interaction of laminin-2/4 with L cells was detected, but, in contrast to laminin-1, this protein has the affinity to A431 cells. No interaction of L cells with fibronectin were detected.

Animals↗

Laminin-2/4 from human placenta is a better adhesion agent for primary keratinocytes than laminin-1 from EHS sarcoma.

A comparison of the adhesion of human primary keratinocytes to laminin-1 from murine EHS sarcoma and laminin-2/4 from human placenta was carried out using two methods, cell adhesion to substrates covered with the laminin isoforms, and interaction of keratinocytes from suspension with latex beads coated with the proteins. Laminin-2/4 was considerably more potent as a promoter of attachment of primary human keratinocytes than laminin-1 (and fibronectin), with increased attachment of cells correlating well with the number of latex bead binding sites. Only small cells of diameter of less than 20 microm bound more than 5 beads. Staining of keratinocytes with involucrin antibodies confirmed the existence of an inverse relationship between laminin-2/4-coated bead binding and differentiation.

Animals↗