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Biomedical subjects

A Holasek

Publications and source records attributed to A Holasek.

At least 19 recordsLinked to original sources

In vivo studies on the binding sites for lipoprotein (a) on parenchymal and non-parenchymal rat liver cells.

The direct correlation between lipoprotein (a) (Lp(a)) concentrations and atherosclerosis stimulated us to investigate the in vivo interaction of Lp(a) with the liver and the various liver cell types. In untreated rats the serum decay of Lp(a) is comparable to that of LDL. By estrogen treatment the interaction of LDL with parenchymal liver cells is increased 17-fold whereas only a 2-fold effect on Lp(a) is found. The decay of Lp(a) in estrogen-treated rats is slower than for LDL. The data indicate that Lp(a) in vivo shows a less efficient interaction than LDL with the estrogen-induced apo-B,E receptor on parenchymal liver cells. It is suggested that the inability of Lp(a) to interact efficiently with the LDL removal system of the liver might be related to its atherogenic action.

Animals↗

Competitive ion binding to low density lipoproteins: an electron spin resonance study.

The electron spin resonance (ESR) technique was used to evaluate binding constants for Ca(II) and Mg(II) in interaction with low density lipoprotein (LDL). The Ca(II) or Mg(II) ions competed with the paramagnetic Mn(II) ions for the same binding sites of two different classes on the LDL surface. For each ion competing with Mn(II), the solutions of eight non-linear competition equations were fit to the experimental titration curves, with two adjustable parameters, the two binding constants. The derived "intrinsic" values (the values corrected for the electrolyte-induced change of the surface potential) for "strong" binding sites for Ca(II) (170 +/- 85 M-1) and Mg(II) (60 +/- 30 M-1) differ significantly from the respective value for Mn(II) (760 M-1). The values for the "weak" binding sites (18 M-1, 15 M-1 and 10 M-1 for Mn(II), Ca(II) and Mg(II), respectively are in the range of the binding constants for these ions in interaction with model membranes.

Binding, Competitive↗

An ESR study of the effect of an electrostatic field on binding of divalent cations to the surface of serum low-density lipoproteins.

The ESR technique has been used to study binding of Mn(II) ions to low-density lipoprotein (LDL) in solutions of various electrolyte ionic strengths. A model of the binding has been proposed which describes all the observations in electrolytes of ten different concentrations in terms of two types of binding sites and two corresponding sets of intrinsic binding parameters (n1 = 8, Kd1 = 1.31 X 10(-3) mol X l-1 and n2 = 170, Kd2 = 5.71 X 10(-2) mol X l-1). These parameters, together with the values of the potential (phi 0) responsible for binding of the ions to specific charged sites on the surface, reproduce the observed binding curves well in all the systems studied. The phi 0 values are obtained as an appropriate solution of the Poisson-Boltzmann equation.

Binding Sites↗

Factors affecting the conversion of high-density lipoproteins: experiments with pig and human plasma.

The conversion of pig high-density lipoproteins (HDL) (mainly HDL3) to fractions of lower densities was studied by incubating pig plasma for 24 h at 37 degrees C in the presence and absence of lipoprotein lipase from bovine milk, lecithin:cholesterol acyltransferase, cholesteryl ester transfer protein and triacylglycerol-rich particles (very-low-density lipoproteins (VLDL) or Intralipid). The results can be summarized as follows. In the presence of lipoprotein lipase and at a VLDL/HDL mass ratio of 2, the F-1.210 of pig HDL was shifted from 3.3 to 4.2, which is characteristic for human HDL2. This shift was caused by the excessive increase in the free fatty acid content in HDL. If 50 g/l of bovine serum albumin were added prior to incubation, the flotation rate of HDL remained in the HDL2a region. If lecithin:cholesterol acyltransferase was active in fasting pig plasma during incubation, we observed only a negligible increase of F-1.210 in HDL. If pig lipoproteins were incubated with human lipoprotein-free serum as a source of cholesteryl ester transfer activity, a slight increase in the flotation rate of HDL was observed, which was amplified in the presence of active lecithin:cholesterol acyltransferase. Pig HDL was converted to a fraction with F-1.210 of 4.2, which is typical for human HDL2, only if active lecithin:cholesterol acyltransferase, cholesteryl ester transfer protein and triacylglycerol-rich particles were present in the incubation mixture. From our results we also concluded that apolipoprotein A-II plays no role in the HDL2 formation.

Animals↗

Age-related changes in lymphocyte subset proportions, surface differentiation antigen density and plasma membrane fluidity: application of the eurage senieur protocol admission criteria.

Peripheral blood lymphocytes from 260 "apparently healthy" males and females, aged 20-97, have been investigated for age-related changes in a number of immunological parameters (percent and number of lymphocytes, OKT 4+ and OKT 8+ cells; OKT 4/8 ratio; intensity of fluorescence of OKT 4 and OKT 8 stained cells; membrane fluidity). Data were then reassessed after exclusion of people who did not conform to the SENIEUR PROTOCOL admission criteria of EURAGE (European Economic Community's Concerted Action Program on Aging) in order to investigate whether the differences observed were attributable to underlying disease. A slight decrease in the number and percentage of lymphocytes, OKT 4+ and especially OKT 8+ cells was found. Intensity of fluorescence of OKT 4 and OKT 8 stained cells from the elderly was reduced and may explain the lower percentages. Membrane fluidity was decreased in old persons (over the age of 75); the free cholesterol/phospholipid molar ratio in the serum increased up to the age of 75 and then declined, and it did not correlate with decreased membrane fluidity. Exclusion of the 20-60% of the study groups who were not eligible for admission according to the SENIEUR PROTOCOL criteria did not affect these results. The feasability and applicability of the PROTOCOL is discussed.

Adult↗

Comparative study of Ca2+ binding to lipoprotein(a) and low density lipoprotein by spin labeling.

The effect of Ca2+ binding on the dynamic properties of various spin labeled fatty acids in lipoprotein(a) (Lp(a)) was studied in comparison with low density lipoprotein (LDL) isolated from human plasma. In contrast to LDL, binding of Ca2+ to Lp(a) induced broadening of the lines in the ESR spectra of the spin labeled stearic acids. In 1.6 M NaBr solutions the thermotropic change in the surface structure was observed in both lipoproteins at similar temperatures. Ten millimolar concentration of Ca2+ shifted the temperature of the thermotropic change in the surface structure of Lp(a) to considerably higher values. We conclude that Ca2+ binding to Lp(a) induces changes in the lipid structure of the particle surface.

Calcium↗

Chromatofocusing of apolipoproteins from human serum high density lipoprotein.

Human HDL was delipidated and the apolipoproteins were fractionated by chromatofocusing. Chromatofocusing, which separates proteins due to their differing isoelectric points, resulted in 8 peaks with corresponding pI values of 7.40, 6.92, 6.64, 5.48, 5.30, 5.18, 4.92 and 4.63. By one single chromatofocusing run four apolipoproteins were obtained in pure form. Two additional polypeptides could be purified during the desalting step using phenyl-Sepharose.

Apolipoproteins↗

Isolation and characterization of polymorphic forms of porcine apoC-II by chromatofocusing.

Chromatofocusing, which separates proteins on the basis of their different isoelectric points, was used to isolate isoforms of apoC-II from porcine very low density lipoproteins. This method was found to be time-saving and the yield of protein recovery was high. With chromatofocusing, three polypeptides were obtained which were characterized by amino acid analysis, double immunodiffusion, and by their ability to activate bovine milk lipoprotein lipase. The three polypeptides had the same amino acid composition, gave a reaction of identity against a monospecific antiserum to porcine apoC-II, but had different isoelectric points between pH 4.8 and 4.4. They all enhanced the activity of lipoprotein lipase, but to a lesser degree than native porcine serum. There was no indication of the existence of apolipoproteins that correspond to human apoC-III polypeptides.

Animals↗

Studies on the possible function of beta 2-glycoprotein-I: influence in the triglyceride metabolism in the rat.

Seven rats were infused with 14C-labeled Intralipid at a constant rate of 0.38 ml per hour over a time period of 4 hours. Four rats served as controls and received an infusion of 0.15 M NaCl or of serum albumin two hours after the start of the experiment. In these animals the plasma triglyceride concentration rose linearly from 30 to 240 min and paralleled the total blood radioactivity. The triglyceride concentrations at the end of the experiments were about 25 times as high as at the beginning. Three rats receiving 2 hr after the start an additional infusion of beta 2-glycoprotein-I at a rate of 10 mg per hr showed a markedly enhanced triglyceride removal from the plasma, reaching a steady state which lasted for more than 30 min. It is concluded that beta 2-glycoprotein-I affects the triglyceride clearance under these experimental conditions.

Animals↗

Proteolytic enzyme activity in patients with severe head injury and the effect of a proteinase inhibitor.

A study was performed to detect the inhibitory effect of intravenously administered aprotinin (Trasylol) on brain and CSF protease activity in 25 patients with severe head injury. The data presented include measurements of CSF protease activity, alpha-1-antitrypsin, alpha-2-macroglobulin, haptoglobulin, polyacrylamidgel-electrophoresis pattern, total protein and hemoglobin content. The results indicate that increased protease activity is present and that this induces autolytic processes which can be inhibited by aprotinin treatment. The survival rate was higher after aprotinin treatment. Total CSF protein content was significantly higher in nonsurvivors than in survivors.

Aprotinin↗

Studies on the protein composition of human serum very low density lipoproteins: demonstration of the beta 2-glycoprotein-I.

Human serum VLDL isolated by polyanion precipitation and ultracentrifugation have been delipidated with ethanal/diethyl ether. By electrophoresis in 10% polyacrylamide gels containing 8M urea, we found a protein which comigrated with apolipoprotein E. This protein was purified by column chromatography and turned out to be identical with beta 2-glycoprotein-I, the serum factor which is necessary for the precipitation of triglyceride-rich lipoproteins with sodium decyl sulfate or sodium dodecyl sulfate. Upon analytical isoelectric focusing, beta 2-glycoprotein-I gave four major bands in the pH region 5.7--6.6. All four bands gave an immunochemical reaction of identity with a monospecific antiserum. From its unique amino acid composition we conclude that beta 2-glycoprotein-I is distinct from all apolipoproteins described previously in the literature.

Amino Acids↗

The separation of human serum high density lipoproteins by hydroxy apatite column chromatography. Evidence for the presence of discrete subfractions.

Human serum high density lipoprotein subfractions 2 and 3, isolated by preparative ultracentrifugation after blocking the enzyme phosphatidylcholine: cholesterol acyl transferase, have been subfractionated further by hydroxyapatite column chromatography. From subfraction 2 we reproducibly obtained 5 and from subfraction 3, 6 fractions differing in chemical composition and apolipoprotein content. The fractions eluting at low salt concentrations were composed primarily of apolipoprotein-A polypeptides while those eluting at high salt concentrations consisted primarily of apolipoprotein-C. From all the 11 subfractions only one contained the "arginine-rich" polypeptide. The apolipoprotein-C-containing fractions were richer in triacylglycerol, phospholipids and free cholesterol as compared to the apolipoprotein-A-containing ones. Although small differences of their partial specific volumes existed, the obtained values indicate that all subfractions belonged to the parent density class. The implications of these results to the current view of lipoprotein metabolism are discussed.

Apolipoproteins↗

The lipid bilayer structure of the abnormal human plasma lipoprotein X. An X-ray small-angle-scattering study.

The structure of the abnormal lipoprotein X occurring in the plasma of patients with obstructive jaundice was investigated by X-ray small-angle scattering. The data were analyzed by discussing the distance distribution functions obtained directly from the experimental data by Fourier transformation, involving no a priori assumptions. The results provide evidence for lipoprotein X being essentially a random distribution of lamellae with a thickness of 5.1 nm and are consistent with hollow spherical (vesicular) structures of outer diameters greater than 30 nm with some overall size heterogeneity. Under the experimental conditions chosen, lipoprotein concentrations between 0.01 and 0.18 g/ml in in buffers of low ionic strength, lateral stacking as observed in negative-stain electron microscopy does not occur. The electron density profile perpendicular to the lamellar plane indicates that a lipid bilayer is the underlying structural principle, with the protein moieties partly bound within the polar head-group regions and partly occluded in soluble form in the vesicle interior.

Cholestasis↗

[A rheological study on plasma lipoproteins (author's transl)].

Lipoproteins of the types LpB and LP-X are studied in a microviscometer to measure intrinsic viscosity. Up to a shear rate of 1700s-1 no shear dependence of viscosity is observed. Intrinsic viscosities are 3.5 and 4.0 for LpB, and 8.5 ml/g for LP-X. Density measurements are used to calculate apparent specific volumes. The results are compatible with a spherical model. An upper limit of 0.45 is estimated for the hydration.

Blood Viscosity↗