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Biomedical subjects

J Rzeszowska-Wolny

Publications and source records attributed to J Rzeszowska-Wolny.

At least 19 recordsLinked to original sources

Adaptor protein Ruk1 forms protein-protein complexes with endonuclease activity in HEK293 cells.

The structural and functional organization of the adaptor protein Ruk(1) is characterized by the presence of three SH3-domains at the N-terminus followed by Pro- and Ser-rich sequences and a C-terminal coiled-coil region. Multiple modules in the Ruk(1) structure involved in protein-protein interactions can provide for formation of ligand clusters with varied properties and subcellular location. To study the nature and biological role of such complexes, the recombinant protein Ruk(1) with a Glu-epitope at the C-terminus (Ruk(1) Glu-tagged) was purified from transfected HEK293 cells by affinity chromatography on protein G-Sepharose with covalently conjugated anti-Glu-tag antibodies. By SDS polyacrylamide gel electrophoresis with subsequent staining with silver, a set of minor bands in addition to the 85-kD Ruk(1) Glu-tagged was detected in the purified preparation of the recombinant protein. Proteins with affinity for nucleic acids were also revealed in the Ruk(1) Glu-tagged preparation by retardation of electrophoretic mobility of 32P-labeled oligodeoxyribonucleotides in gel. The Ruk(1) Glu-tagged preparation was also shown to hydrolyze both deoxyribonucleotides and plasmid DNA. ZnCl2 and heparin inhibited the DNAse activity. These findings suggest the presence of DNases associated with the Ruk(1) protein in HEK293 cells. Such complexes were isolated from lysates of HEK293 cells by chromatography on heparin-Sepharose. By elution with 0.5 and 1.0 M NaCl, two fractions with DNase activity and containing proteins with molecular weights of 83, 80, and 72 kD were obtained. The reaction was inhibited by ZnCl2 and heparin, and previous precipitation of Ruk-related proteins with anti-Ruk antibodies resulted in the exhaustion of nuclease activity. By immunoblotting with anti-Ruk antibodies, 83-kD protein immunologically related to the Ruk(1) protein was identified in the fractions. It was concluded that the adaptor protein Ruk(1) forms complexes with endonucleases in HEK293 cells.

Adaptor Proteins, Signal Transducing↗

Antioxidant vitamins C, E and beta-carotene reduce DNA damage before as well as after gamma-ray irradiation of human lymphocytes in vitro.

The protective effect of Vitamins C, E and beta-carotene against gamma-ray-induced DNA damage in human lymphocytes in vitro was investigated. Cultured lymphocytes were exposed to increasing concentration of these vitamins either before or after irradiation with 2Gy of gamma-rays and DNA damage was estimated using micronucleus assay. A radioprotective effect was observed when antioxidant vitamins were added to cultured cells before as well after irradiation; the strongest effect was observed when they were added no later than 1h after irradiation. The radioprotective effect of vitamins also depended on their concentration; Vitamins C added at low concentration (1 microg/ml) before exposure of the cells to radiation prevented induction of micronuclei. Vitamin E at the concentration above 2 microg/ml decreased the level of radiation-induced micronuclei when compared to the cells irradiated without vitamin treatment. beta-Carotene was effective at all tested concentrations from 1 to 5 microg/ml and reduced the number of micronuclei in irradiated cells. The vitamins had no effect on radiation-induced cytotoxicity as measured by nuclear division index. The radioprotective action of antioxidant Vitamins C, E and beta-carotene was dependent upon their concentration as well as time and sequence of application.

Antioxidants↗

Detection of damage-recognition proteins from human lymphocytes.

Proteins recognizing and binding to damaged DNA (DDB-proteins) were analyzed in human lymphocytes obtained from healthy donors. Using an electrophoretic mobility shift assay several complexes between nuclear extract proteins and damaged DNA were detected: a complex specific for DNA damaged by N-acetoxy-N-acetylaminofluorene, another complex specific for UV-irradiated DNA, and two complexes specific for DNA damaged by cis-dichlorodiammine platinum. All the detected complexes differed in electrophoretic mobility and possibly contained different proteins. Complexes specific for free DNA ends were also detected in protein extracts from lymphocytes.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide↗

Damaged DNA-binding proteins: recognition of N-acetoxy-acetylaminofluorene-induced DNA adducts.

Proteins which bind to the DNA damaged by genotoxic agents can be detected in all living organisms. Damage-recognition proteins are thought to be generally involved in DNA repair mechanisms. On the other hand, the relevance to DNA repair of some other proteins which show elevated affinity to damaged DNA (e.g. HMG-box containing proteins or histone H1) has not been established. Using the electrophoretic mobility-shift assay we have investigated damage-recognition proteins in nuclei from rat hepatocytes. We detected two different protein complexes which preferentially bound the DNA damaged by N-acetoxy-acetylaminofluorene. One of them also recognized the DNA damaged by benzo(a)pyrene diol epoxide (yet with much lower efficiency). The proteins which bind to damaged DNA are permanently present in rat cells and their level does not change after treatment of animals with the carcinogens. Differences in the affinity of the detected damage-recognition proteins to DNA lesion evoked by either carcinogen did not correlate with more efficient removal from hepatic DNA of 2-acetylaminofluorene-induced adducts than benzo(a)pyrene-induced ones.

Acetoxyacetylaminofluorene↗

Characterization of DNA sequences localized 11 to 17.5 kb upstream of the chicken embryonic pi-globin gene.

We have analyzed the DNA fragment localized about 11 to 17.5 kb upstream of the chicken alpha-globin gene domain (the fragment was designed as alpha-0). The nucleotide sequence of its 3.3 kb-long 5' part was established and interactions with nuclear matrix proteins were studied. The DNA region localized about 16 kb upstream of the embryonic pi-globin gene showed high affinity to nuclear matrices in vitro. Two palindromes and a cluster of inverted repeats were co-localized in the same region. The whole 6.6 kb alpha-0 fragment decreased the activity of linked CAT reporter gene when transfected into chicken erythroblastoid cells.

Animals↗

Modifying effect of vitamins C, E and beta-carotene against gamma-ray-induced DNA damage in mouse cells.

The modifying effect of treatment with vitamins C, E and beta-carotene on the clastogenic activity of gamma rays was investigated in mice. Damage in vivo was measured by the micronucleus assay in bone marrow polychromatic erythrocytes and exfoliated bladder cells. The vitamins were administered orally, either for five consecutive days before or immediately after irradiation with 2 Gy of gamma rays. The results show that pretreatment with vitamin E (100-200 mg/kg/day) and beta-carotene (3-12 mg/kg/day) were effective in protecting against micronucleus induction by gamma rays. Vitamin C depending on its concentration enhanced the radiation effect (400 mg/kg/day), or reduced the number of micronucleated polychromatic erythrocytes (50-100 mg/kg/day). Such effect was weekly observed in exfoliated bladder cells. The most effective protection in both tissues was noted when a mixture of these vitamins was used as a pretreatment. Administration of the all antioxidant vitamins to mice immediately after irradiation was also effective in reducing the radiation-induced micronucleus frequency. The data from the in vitro experiments based on the comet assay show that the presence of the vitamins in culture medium influences the kinetic of repair of radiation-induced DNA damage in mouse leukocytes.

Animals↗

The non-random distribution of UV-induced photoproducts in the nuclear matrix and non-matrix DNA fractions.

The formation of UV-induced photoproducts in the chromatin fractions of human lymphocytes was studied by 32P-post-labeling. A higher level of DNA lesions was found in the matrix-attached DNA fraction as compared to non-matrix DNA of irradiated cells (about 150 and 110 adducts per 10(6) nucleotides, respectively, at a 500 J/m2 254 nm-UV dose). Formation of photoproducts in a MAR (matrix attached region) sequence from the mouse kappa immunoglobulin gene irradiated in vitro was examined as well. The MAR sequence showed a two-fold higher level of adducts as compared to non-MAR DNA. The effect of photoproducts on complex-formation between MAR DNA and proteins of the nuclear matrix was studied in vitro. The amount of UV-induced adducts was 1.5-fold higher in matrix-bound fraction as compared to non-fractionated DNA (and five-fold higher as compared to unbound fraction), which possibly resulted from preferential binding of lesion-containing DNA fragments to the nuclear matrix proteins.

Animals↗

Interactions of rat repetitive sequence MspI8 with nuclear matrix proteins during spermatogenesis.

Using the Southwestern blot analysis we have studied the interactions between rat repetitive sequence MspI8 and the nuclear matrix proteins of rat testis cells. Starting from 2 weeks the young to adult animals showed differences in type of testis nuclear matrix proteins recognizing the MspI8 sequence. The same sets of nuclear matrix proteins were detected in some fractions enriched in spermatocytes and spermatides and obtained after fractionation of testis cells of adult animals by the velocity sedimentation technique.

Animals↗

DNA repair is less efficient in the nuclear matrix than in non-matrix nuclear fractions in the liver of rats treated with 2-aminofluorene.

The amount of DNA adducts and radioactive thymidine incorporation into DNA fractions attached and not attached to the nuclear matrix in the liver of rats treated with the carcinogen 2-aminofluorene (2-AF) were compared. The rate of [3H]thymidine incorporation was directly proportional to the amount of adducts in total hepatic DNA. Within the first 10 h after the carcinogen treatment, the level of adducts in the nuclear matrix DNA was higher than in the whole nuclei. The rate of [3H]thymidine incorporation into the nuclear matrix DNA was 5-30% lower than into DNA in whole nuclei at any time after 2-AF injection. We suggest that in rat liver cells, the 2-AF-induced DNA repair does not occur in close contact with the nuclear matrix.

Animals↗

MspI8, the repetitive sequence specifically interacting with nuclear matrix of rat testis cells.

The nuclear matrix bound DNA fraction of rat testis showed enrichment in repetitive sequences found in the 450 bp band after gel electrophoresis of the MspI digested rat DNA. DNA fragments isolated from this band were cloned. DNA of the clone pMspI8 showed homology to some representatives of rat LINE sequence family, and complexed in vitro more efficiently with testes nuclear matrix proteins than with yeast ARS1 sequence containing the matrix association region (MAR) or DNA from an other clone, MspI19. Western blot analysis showed that MspI8 sequence interacts with testes matrix protein of about 120 kDa.

Animals↗

Partial hepatectomy of rats 3 weeks before or simultaneously with 2-aminofluorene injection can affect the amounts of adducts induced in hepatic DNA.

The influence of partial hepatectomy on the level of 2-aminofluorene (2-AF) induced DNA adducts in rat liver was studied. We found that partial hepatectomy performed either 3 weeks before or simultaneously with the injection of 2-AF affected the amounts of adducts in rat hepatic DNA compared to controls. The level of DNA adducts in rats that were treated with 2-AF and simultaneously hepatectomized was higher (19.9 fmol/microgram DNA) than in non-hepatectomized ones (14.4 fmol/microgram DNA) when measured 48 h after 2-AF administration. In rats treated with the carcinogen 3 weeks after hepatectomy the level of DNA adducts was significantly higher than in nonhepatectomized rats when measured 15 days after the injection of 2-AF (10.9 fmol/microgram DNA and 5.9 fmol/microgram DNA respectively). The high level of DNA adducts in that group of hepatectomized animals was correlated with a relatively lower rate of 2-AF-induced radioactive thymidine incorporation into hepatic DNA (in comparison to non-hepatectomized rats).

Animals↗

DNA and proteins of the nuclear matrix are the main targets of benzo[a]pyrene's action in rat hepatocytes.

The binding of [14C]benzo[a]pyrene (B[a]P) to DNA and proteins in total nuclei and subnuclear fractions of cultured rat hepatocytes was compared. The main targets of B[a]P were non-histone high molecular weight proteins of the nuclear matrix and DNA sequences attached to this structure. Following 24 h exposure to B[a]P the amounts of adducts in the nuclear matrix DNA and proteins were twice as high as in total nuclei. After withdrawal of the carcinogen containing medium the level of B[a]P-induced adducts gradually decreased but always remained the highest in the nuclear matrix proteins. Removal of adducts from the nuclear matrix DNA was more efficient than from the other DNA fractions, and 72 h after exposure to the carcinogen the level of DNA adducts in this fraction was similar to that in total nuclei.

Animals↗

Formation and removal of DNA adducts in liver of rats treated with hepatocarcinogens 2-aminofluorene or 2-acetylaminofluorene.

The level of adducts in DNA of rats treated with 2-aminofluorene (2-AF) and 2-acetylaminofluorene (2-AAF) was compared at the times from 1 h till 28 days after injection. The highest amount of DNA adducts was observed 12 h after treatment with 2-AF and 24 h after treatment with 2-AAF, and reached values of about 18 and 21 fmol per micrograms DNA, respectively. Participation of the nonacetylated form, dG-C8-AF, in the total amount of DNA adducts was only slightly greater in rats treated with 2-AF then in those treated with 2-AAF.

2-Acetylaminofluorene↗

Mapping of structural and transcription-related matrix attachment sites in the alpha-globin gene domain of avian erythroblasts and erythrocytes.

The positions of preferential DNA interaction with the nuclear matrix were mapped within the domain of the chicken alpha-globin genes in transcriptionally active erythroblast nuclei and inactive nuclei of mature erythrocytes. In the latter, only two major distinct attachment sites were observed, close to the A + T-rich sequences previously found at the boundaries of the domain. Sequencing of these structural matrix attachment points revealed several known DNA motifs; some of them were present on both sides of the domain. In actively transcribing erythroblast nuclei of adult animals, a large fraction of the transcribed area was represented in nuclear matrix DNA, including upstream and downstream elements. In particular, adult alpha A- and alpha D-globin genes were found in matrix DNA, while the transcribed but translationally unexpressed embryonic pi gene was underrepresented. The data are discussed in terms of the existence of stable or structural and expression-related matrix attachment sites; correlations to the origin of replication and the units of transcription of the domain are shown.

Animals↗

Formation of DNA adducts in liver of rats treated with 2-aminofluorene. Differences between total and matrix attached DNA fractions.

The level of adducts in total DNA and the nuclear matrix-attached DNA was compared at 12, 24, 48 and 72 h after a single injection of a hepatocarcinogen, 2-aminofluorene. In rat liver, the amount of adducts in total DNA increased gradually up to 72 h, reaching the value of about 54 per 10(7) nucleotides, whereas the maximal level of adducts in matrix DNA was observed 48 h after injection. Matrix and total DNA differed, also in the level of adducts in particular spots in four dimensional chromatography on PEI cellulose plates.

Animals↗

Interaction of DNA with nuclear skeleton in rat hepatocytes.

We have characterized fractions liberated from rat liver cell nuclei digested with DNase I and treated with buffers containing 0.1, 0.5 and 2 M NaCl. Analysis of DNA and proteins present in these fractions as well as in nuclear matrix, confirms the chromatin model according to which transcriptionally active loops interact differently with nuclear skeleton than inactive ones.

Animals↗