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Biomedical subjects

I Alexandrov

Publications and source records attributed to I Alexandrov.

13 recordsLinked to original sources

Alpha-satellite DNA of primates: old and new families.

In this report we review alpha-satellite DNA (AS) sequence data to support the following proposed scenario of AS evolution. Centromeric regions of lower primate chromosomes have solely "old" AS based on type A monomeric units. Type A AS is efficiently homogenized throughout the whole genome and is nearly identical in all chromosomes. In the ancestors of great apes, a divergent variant of the type A monomer acquired the ability to bind CENP-B protein and expanded in the old arrays, mixing irregularly with type A. As a result, a new class of monomers, called type B, was formed. The "new" AS families were established by amplification of divergent segments of irregular A-B arrays and spread to many chromosomes before the human-chimpanzee-gorilla split. The new arrays contain regularly alternating monomers of types A and B. New AS is homogenized within an array with little or no homogenization between chromosomes. Most human chromosomes contain only one new array and one or a few old arrays. However, as a rule only new arrays are efficiently homogenized. Apparently, in evolution, after the establishment of the new arrays homogenization in the old arrays stopped. Notably, kinetochore structures marking functional centromeres are also usually formed on the new arrays. We propose that homogenization of AS may be limited to arrays participating in centromeric function.

Animals↗

Ap4A induces apoptosis in human cultured cells.

Diadenosine oligophosphates (Ap(n)A) have been proposed as intracellular and extracellular signaling molecules in animal cells. The ratio of diadenosine 5',5'''-P1,P3-triphosphate to diadenosine 5',5'''-P1,P4-tetraphosphate (Ap3A/Ap4A) is sensitive to the cellular status and alters when cultured cells undergo differentiation or are treated with interferons. In cells undergoing apoptosis induced by DNA topoisomerase II inhibitor VP16, the concentration of Ap3A decreases significantly while that of Ap4A increases. Here, we have examined the effects of exogenously added Ap3A and Ap4A on apoptosis and morphological differentiation. Penetration of Ap(n)A into cells was achieved by cold shock. Ap4A at 10 microM induced programmed cell death in human HL60, U937 and Jurkat cells and mouse VMRO cells and this effect appeared to require Ap4A breakdown as hydrolysis-resistant analogues of Ap4A were inactive. On its own, Ap3A induced neither apoptosis nor cell differentiation but did display strong synergism with the protein kinase C activators 12-deoxyphorbol-13-O-phenylacetate and 12-deoxyphorbol-13-O-phenylacetate-20-acetate in inducing differentiation of HL60 cells. We propose that Ap4A and Ap3A are physiological antagonists in determination of the cellular status: Ap4A induces apoptosis whereas Ap3A is a co-inductor of differentiation. In both cases, the mechanism of signal transduction remains unknown.

3T3 Cells↗

Fluorescent and electron-microscopy immunoassays employing polyclonal and monoclonal antibodies for detection of goose parvovirus infection.

Polyclonal antibodies (PAbs) raised in geese and eight mice hybridomas secreting monoclonal antibodies (MAbs) against the goose parvovirus (GPV) were prepared. They were used for development of immunofluorescence (IF) and immunoelectron-microscopic (IEM) techniques to demonstrate the GPV infection in infected organs and biological fluids. The GPV antigens were established by immunofluorescence within the nuclei and the cytoplasm of many infected cells of the chorioallantoic membrane of goose and Peckin duck embryos, liver and heart of mortally diseased goslings. By means of IEM it was possible to detect the GPV in native organ homogenate supernatants and allantoic fluids. All techniques used in the study could be successfully applied for rapid diagnosis of the GPV infection. The test systems on the basis of MAbs should, however, be preferred. By means of immunoblotting (IB) using PAbs and MAbs four viral proteins (VP) with MW 88, 77, 65 and 60 kDa were demonstrated. Contrary to the others the VP with MW 65 kDa was the most antigenically reactive though invisible in the SDS-PAGE and Coomassie-blue dye-stained preparations.

Animals↗

Investigations on the aminoacid content of tumor associated antigens of rat sarcoma cells induced by virus.

In our previous work (Alexandrov et al., 1996) was reported that the rat sarcoma cells induced by SR-RSV express two tumor associated antigens (TAA). The one TAA has a molecular weight of 52 kD and is detected by the help of a monoclonal antibody 2C2 only on the outer side of the plasma membrane of the sarcoma cells. The other antigen, with molecular weight of 28 kD, is expressed on the outher and inner side of the membrane. The antigens were isolated as a pure fraction by polyacrylamide electrophoresis and prepared for aminoacid analysis after that. The consisting 16 bound aminoacids were in different amounts. Both antigens are rich in glycine and poor in aromatic and sulphur-containing aminoacids. The presence of glucosamine and galactosamine in the antigens proves their glycoprotein nature. The received data show that the both TAA-s differ not only in molecular weights, place of expression and functional activity, but also in the amount of the bound aminoacids which constitute their proteins.

Amino Acids↗

Unequal cross-over is involved in human alpha satellite DNA rearrangements on a border of the satellite domain.

It can be invoked from the theory of tandem repeat homogenization that DNA on a satellite/non-satellite border may carry sequence marks of molecular processes basic to satellite evolution. We have sequenced a continuous 17-kb alpha satellite fragment bordering the non-satellite in human chromosome 21, which is devoid of higher-order repeated structure, contains multiple rearrangements, and exhibits higher divergence of monomers towards the border, indicating the lack of efficient homogenization. Remarkably, monomers have been found with mutually supplementary deletions matching each other as reciprocal products of unequal recombination, which provide evidence for unequal cross-over as a mechanism generating deletions in satellite DNA.

Base Sequence↗

Sodium butyrate suppresses apoptosis in human Burkitt lymphomas and murine plasmacytomas bearing c-myc translocations.

We report that sodium butyrate, a natural product of fiber degradation by colonic bacteria, markedly suppresses c-Myc-mediated apoptosis induced in murine plasmacytomas and human Burkitt lymphomas by growth factor deprivation, but not in cell lines devoid of c-myc translocations. Attenuation of cell death is associated with downregulation of the rearranged c-myc and activation of pRb via its dephosphorylation. We suggest that in vivo sodium butyrate may play an important role in plasmacytomagenesis by supporting the survival of cells with c-myc translocations, which otherwise would be eliminated by the lack of growth factors.

Animals↗

c-Raf kinase binds to N-terminal domain of c-Myc.

We have demonstrated that the 50 N-terminal amino acids of c-Myc bind a kinase activity, which phosphorylates Myc in vitro predominantly on Thr8. We also have shown that c-Raf, a widely known Ser/Thr kinase, involved in the Ras signaling pathway, binds to the same portion of c-Myc in vitro. In addition we were able to precipitate native c-Myc/Raf complex from various cell lysates. Physical interaction of Myc and Raf may potentially be a part of their well-known functional cooperation.

Adenosine Triphosphate↗

Two tumor-associated membrane antigens defined by monoclonal antibodies in a transplantable sarcoma induced by Rous sarcoma virus in rat.

Two hybridoma clones have been produced by hybridization of murine myeloma cell line PAI and splenocytes from BALB/c mice immunized with cells from a transplantable sarcoma induced in rat by SR-RSV. The antibody produced by hybridoma clone 2C2 was of subclass IgG3 and recognized a cell surface antigen of 52 kD. It only cross-reacted with cells from SR-RSV-induced sarcoma in hamster, but not with cells from the chicken RSV-induced sarcoma, nor with a number of methylcholanthrene sarcomas and various other tumors of viral or other etiology developed in rats, mouse, hamsters or chickens. The antibody produced by hybridoma clone 5G2 was of subclass IgG2A and recognized an antigen of 28 kD which was located under the plasma membrane, particularly in the cell protrusions and microvilli. Cross-reactions were found with all sarcoma cells tested, indicating that this antigen might represent a common sarcoma antigen of comparatively low molecular mass.

Animals↗

[Ultracytochemical demonstration of enzymes by reduction of potassium hexacyanoferrate (III). I. A method for demonstration of xanthine oxidase].

Xanthine oxidase is a flavoprotein which directly catalyses the oxidation of xanthine and hypoxanthine by oxygen or by potassium ferricyanide as an artificial acceptor of protons. In doing so, the potassium ferricyanide is reduced into potassium ferrocyanide which in the presence of manganese(II)ions leads to the manganese(II)ferrocyanide which is insoluble in water and in organic solvents. The latter is deposited on the areas with enzyme activity and marks them under the electron microscope. After the detection of the xanthine oxidase in rat liver on ultrathin non-contrasted sections, it was observed that the fine granular reaction product was deposited only on the peroxisomes of the hepatocytes. A greater quantity of the reaction product is deposited on the outer membrane and the matrix and a smaller one on the nucleoid of these cell organelles. No deposition of the reaction product was observed on the other cell structures. The method can be used for the study of purine metabolism on the cellular level as well as for the specific ultracytochemical detection of the peroxisomes.

Animals↗