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Biomedical subjects

C Marcinkiewicz

Publications and source records attributed to C Marcinkiewicz.

28 records · Page 2Linked to original sources

Disintegrin interaction with alpha V beta 3 integrin on human umbilical vein endothelial cells: expression of ligand-induced binding site on beta 3 subunit.

The effect of seven disintegrins (albolabrin, barbourin, bitistatin, echistatin, eristostatin, flavoridin, and kistrin) and the neurotoxin analogue, mambin, on the adhesion of human umbilical vein endothelial cells (HUVEC) to immobilized vitronectin and fibronectin has been studied. Adhesion to vitronectin was significantly inhibited by echistatin, kistrin, flavoridin, and mambin. Echistatin, flavoridin, and kistrin bound with high affinity to immobilized alpha V beta 3 in solid phase assay; other disintegrins bound at a much lower level. Echistatin and flavoridin had a modest inhibitory effect on HUVEC adhesion to fibronectin. HUVEC adhered to disintegrins with a high selectivity toward bitistatin, echistatin, flavoridin, kistrin, and mambin. Adhesion of HUVEC to fibronectin and vitronectin resulted in cell spreading, whereas cells adhering to immobilized echistatin remained globular and cells adhering to kistrin showed abnormal morphology. Echistatin and kistrin potently inhibited the binding of monoclonal antibody (Mab) 7E3, which recognizes the alpha V beta 3 complex, to HUVEC. Echistatin and kistrin also induced the binding to HUVEC of Mab 62, which recognizes the ligand-induced binding site (LIBS) epitope on the beta 3 subunit, enhancing HUVEC binding to immobilized Mab 62. Similar results with both antibodies were obtained in Chinese hamster ovary cells transfected with alpha V beta 3 genes. In conclusion, disintegrin interaction with HUVEC appears to be selectively mediated by alpha V beta 3 receptors, and it results in an expression of LIBS epitope that may play a role in the regulation of ligand-binding affinity and intracellular signaling.

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One-step affinity purification of recombinant alphavbeta3 integrin from transfected cells.

Vitronectin receptor (alphavbeta3 integrin) is present on the surface of many types of cells. We describe a simple, fast, and reliable method of purification of recombinant human alphavbeta3 from Chinese hamster ovary (CHO) cells transfected with alphavbeta3 (VNRC3 cells). The method consists of two steps: lysis of the cells and affinity chromatography of the lysate on a GRGDSPK-Sepharose column. The yield of the procedure was about 79%. The purified receptor migrated as two bands on a silver stained SDS-polyacrylamide gel, corresponding to the alphav and beta3 subunits, and was recognized by monoclonal antibodies directed against alphav and the alphavbeta3 complex, but not by monoclonal antibody specific for the alphaIIbbeta3 complex. This receptor also bound to immobilized vitronectin, von Willebrand factor, and echistatin. However, binding to immobilized fibrinogen was not observed. Purified recombinant alphavbeta3 demonstrated greater immunoreactivity with LM 609, an alphavbeta3 complex-specific monoclonal antibody, than alphavbeta3 purified from placenta. As visualized by SDS-polyacrylamide gel electrophoresis, preparations of placenta-derived alphavbeta3 contained several contaminating proteins that were not present in preparations of recombinant alphavbeta3 purified from the transfected CHO cells.

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EF-1 alpha is a target site for an inhibitory effect of quercetin in the peptide elongation process.

The effect of quercetin (3,3',4',5,7-pentahydroxyflavone) on the polypeptide elongation system isolated from rat liver cells, was investigated. Quercetin inhibited [14C]leucine incorporation into proteins in vitro and the inhibitory effect is being directed towards the elongation factor eEF-1, but not to eEF-2 and ribosomes. Quercetin was found to form a complex with EF-1 alpha, which was inactive in GTP-dependent binding to ribosomes. It can be suggested that quercetin can block the total or the part of the domain of EF-1 alpha structure that is responsible for formation of the ternary complex EF-1 alpha-GTP-[14C]Phe-tRNA and therefore preventing formation of the quaternary complex with ribosomes.

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Isolation and properties of the subunit form EF-1C of elongation factor 1 from Guerin epithelioma cells.

EF-1C is a component of the aggregate EF-1B, consisting of the subunit forms EF-1A.EF-1C; it was isolated by dissociation of this aggregate in the presence of GTP. The subunit form EF-1C stimulates binding of aminoacyl-tRNA to ribosomes, catalysed by EF-1A, similarly as EF-1 beta gamma which stimulates the activity of EF-1 in other eukaryotic cells. EF-1C in the presence of 6 M urea was separated into two polypeptides. Polypeptide of molecular mass 32,000 Da is responsible for regeneration of the EF-1A.GTP active complex. Thermal sensitivity of EF-1A was much higher than that of EF-1B, thus a protective role of EF-1C in the EF-1A.EF-1C complex is suggested.

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The effect of phosphorylation of the EF-2 isolated from rat liver cells on protein biosynthesis in vitro.

The activity of EF-2 was distinctly decreased after phosphorylation catalysed by a partly purified calmodulin and Ca2+ dependent protein kinase III. At the same time 32P from [gamma-32P]ATP was incorporated into EF-2 molecule. After dephosphorylation of EF-2 catalysed by alkaline phosphatase the activity of this factor was increased. This suggests that the phosphorylation-dephosphorylation of EF-2 is the regulatory process in the elongation step of the translation. Preliminary purification of the kinase III from rat liver resulted in 8-fold purified enzyme with a recovery of 60%.

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Purification and properties of the heterogeneous subunits of elongation factor EF-1 from Guerin epithelioma cells.

Elongation factor EF-1 from Guerin epithelioma was separated into two subunit forms EF-1A and EF-1B by chromatography in the presence of 25% glycerol, successively on CM-Sephadex and DEAE-Sephadex. It was shown that EF-1A is a thermolabile, single polypeptide which catalyses the binding of aminoacyl-tRNA to ribosomes, similarly as eukaryotic EF-1 alpha or prokaryotic EF-Tu. EF-1B was characterized as a complex composed of at least two polypeptides. One of them is EF-1A, the other EF-1C, which stimulates EF-1A activity and protects this elongation factor from thermal inactivation.

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Organics.

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Alkanes↗

The substances of plant origin that inhibit protein biosynthesis.

Some plants were used for a long time in folk medicine as sources of anti-tumour remedies. Their effects on protein biosynthesis in vitro have been examined and described. The separate features of the peptide elongation system, isolated from tumoural cells, have been demonstrated. Some elongation factors or ribosomes have been shown to be a target site for the inhibition of protein biosynthesis caused by the substances isolated from various sources. The glycoside and caffeic acid, isolated from Melissa officinalis leaves, inhibited protein biosynthesis by direct influence the elongation factor eEF-2. The activity of this factor was also inhibited by aloin and aloeemodin. Saponin glycoside and its aglycon, isolated from Verbascum thapsiforme flowers, as well as digoxin, emetine and cepheline directly inactivated ribosomes. "Chagi" fraction, isolated from Inonotus obliquus, is responsible for the inhibitory effect caused by the aqueous tannin--less extract from this fungus. The target site for quercetin has been found to be the subunit form EF-1 alpha. It may be supposed that, the plant inhibitors of protein biosynthesis could be utilized for searching specific antitumoural preparations.

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