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Biomedical subjects

L Holmquist

Publications and source records attributed to L Holmquist.

At least 73 records · Page 4Linked to original sources

Evidence for deficiency of high density lipoprotein lecithin: cholesterol acyltransferase activity (alpha-LCAT) in fish eye disease.

In a rare familial condition, fish eye disease, there is a low relative content of cholesteryl esters in the plasma high density lipoproteins (HDL) but a normal content of these lipids in the very low (VLDL) and low (LDL) density lipoproteins. Lecithin: cholesterol acyltransferase (LCAT) is the enzyme which mediates the esterification of free cholesterol in the plasma lipoproteins. In the present investigation, isolated HDL from our two fish eye disease patients were found to be excellent substrates during in vitro incubations with normal LCAT as present in lipoprotein depleted plasma from control subjects. Almost all free cholesterol of these HDL fractions became esterified and concomitantly the abnormally small fish eye disease HDL particles increased to a size in the range of that of normal HDL particles. Lipoprotein depleted plasma from fish eye disease, however, lacked the property of normal plasma to esterify the free cholesterol of HDL isolated from plasma of fish eye disease patients or control subjects. These results have led to the formulation of a new concept implying that two different LCAT activities exist in normal plasma. One of these activities, denoted alpha-LCAT, is specific for HDL (alpha-lipoproteins) and the other, beta-LCAT, is specific for VLDL-LDL (pre beta- and beta-lipoproteins). Fish eye disease according to this notion is classified as an alpha-LCAT deficiency in contrast to the classical LCAT deficiency which probably lacks both alpha- and beta-LCAT activities.

Aged↗

Evidence for the presence in human plasma of lecithin: cholesterol acyltransferase activity (beta-LCAT) specifically esterifying free cholesterol of combined pre-beta- and beta-lipoproteins. Studies of fish eye disease patients and control subjects.

The present study was undertaken to test our hypothesis that two different lecithin: cholesterol acyltransferase (LCAT) activities exist in normal human plasma, one denoted alpha-LCAT esterifying the free cholesterol of high density lipoproteins (HDL) and the other denoted beta-LCAT acting on the free cholesterol of very low (VLDL) and low (LDL) density lipoproteins. Plasmas depleted of HDL were obtained by means of preparative ultracentrifugation. Incubation at 37 degrees C of these plasma fractions from control subjects and patients with fish eye disease resulted in esterification of the remaining free cholesterol of combined VLDL and LDL (pre-beta- and beta-lipoproteins) in the HDL depleted plasmas. The shapes of the cholesterol esterification rate curves were similar for whole and HDL depleted plasmas from both control subjects and fish eye disease patients. In crosswise mixed incubation experiments with isolated combined VLD and LDL and total lipoprotein depleted plasma from a control subject and a patient with fish eye disease, respectively, esterification of free cholesterol occurred. Incubation of isolated total lipoproteins in plasma from a patient with LCAT deficiency mixed with total lipoprotein depleted plasma from a fish eye disease patient as a source of LCAT caused cholesterol esterification but did not result in normalization of the LCAT deficiency HDL particles, while the amount of normal-sized LDL particles increased. The present results support the hypothesis that a beta-LCAT exists in normal human plasma.

Aged↗

Plasma apolipoprotein pattern in fish-eye disease examined by high-resolution two-dimensional electrophoresis.

We compared the plasma protein patterns of the two living patients suffering from fish-eye disease with those of appropriate controls, using high-resolution two-dimensional electrophoresis. Quantitative abnormalities were detected in plasma polypeptides corresponding to the isoforms of apolipoproteins A-I and A-II. The disease was characterized by normal concentrations of proapo A-I but dramatically subnormal concentrations of the other apo A-I isoforms and apo A-II. No significant difference was detected in the concentrations of other plasma proteins. These findings are discussed in relation to other apolipoprotein disorders.

Apolipoprotein A-I↗

Distribution of apolipoprotein E isoforms between very low and high density lipoproteins of normal subjects and hyperlipidemic patients with special reference to type III hyperlipidemia.

Serum very low (VLDL) and high density lipoproteins (HDL) from 17 hyperlipidemic patients and 10 normal subjects have been isolated by preparative ultracentrifugation, and the electrophoretic patterns of apolipoprotein E (apo E) isoforms in the lipoproteins have been examined by isoelectric focusing. Type III hyperlipidemia (dyslipoproteinemia) has been suggested to be a disease caused by an abnormal mutant of the apo E-3 isoform. In accordance with this, all patients with type III hyperlipidemia in the present study showed lack of apo E-3 in VLDL. However, all these patients demonstrated a protein zone corresponding to apo E-3 in their HDL fraction. Patients with other types of hyperlipidemia or normal subjects who showed an apo E-4 variant in VLDL had an HDL that lacked apo E-4. The results support the hypothesis that type III hyperlipidemia is due to an abnormal composition of the VLDL particles rather than a result of an abnormal mutant of apo E-3.

Apolipoproteins↗

Studies on high density lipoproteins in fish eye disease.

Serum high density lipoproteins (HDL) were isolated by preparative ultracentrifugation from two patients with fish eye disease (FED). Compared to HDL from control subjects the HDL particles of FED were characterized by their abnormally small size and a relative enrichment with polar lipids. No qualitative abnormalities of the HDL apolipoproteins were revealed upon polyacrylamide disc gel electrophoresis or isoelectric focusing. The plasma pool of apolipoprotein A was reduced by 90%.

Adult↗

Concentrations of apolipoproteins B, C-I, C-II, C-III and E in sera from normal men and their relation to serum lipoprotein levels.

The concentrations of apolipoproteins B, C-I, C-II, C-III and E (by enzyme immunoassay), and cholesterol, triglycerides and phospholipids both in while serum and in serum very low (VLDL), low (LDL) and high (HDL) density lipoproteins, HDL2 and HDL3, were determined in sera from 29 randomly selected normolipidemic men, age 40-60 years, in Stockholm, Mean values, +/- SD, were for, apolipoprotein B, 720 +/- 162; C-I, 63 +/- 14; C-II, 27 +/- 11; C-III, 125 +/- 57; and for E, 25 +/- 6 mg/l. A skewness to the right of the distributions was found for apolipoproteins B and C-II and for serum triglycerides and VLDL lipids. The relations between the different variables were studied by linear correlation analysis. Several significant correlations existed between the lipoprotein levels. Apolipoprotein C-I, C-II and C-III were significantly correlated with each other, whereas neither apolipoprotein B nor apolipoprotein E was correlated with any other apolipoprotein. The following significant, positive correlations existed between the apolipoproteins and total serum lipids and/or lipids of lipoprotein density classes: apolipoprotein B with serum cholesterol and LDL lipids, apolipoprotein C-I with HDL3 cholesterol, apolipoprotein C-II with serum triglycerides and VLDL lipids, apolipoprotein C-III with serum cholesterol and phospholipids. Apolipoprotein E showed no correlation with either serum lipids or lipoproteins.

Adult↗

Quantitation of human serum apolipoprotein B by enzyme immunoassay.

An enzyme immunoassay for human serum apolipoprotein B is described. The assay is competitive and uses cellulose nitrate coated polystyrene tubes with adsorbed monospecific antibodies, to which is added intact low density lipoprotein (LDL) conjugated with alkaline phosphatase. The coefficients of variation were 8 and 10% for within-run and between-run reproducibility respectively, for the range 100-200 ng of apolipoprotein B in the sample. Recovery determinations on isolated very low and low density lipoprotein fractions showed good yields of immunologically determined apolipoprotein B relative to chemically determined apolipoprotein. Using this method on a control material of apparently healthy 40-60 year old men a good correlation (r = 0.67, p = 0.01) was found between serum apolipoprotein B content and serum LDL cholesterol.

Adult↗

Loss of human serum apolipoproteins C and E during manipulation of diluted solutions.

The adsorption of human serum very low density apolipoproteins C-I, C-II, C-III, and E to the interior surfaces or Beckman Airfuge plastic tubes and glass pipettes has been studied. 125I-Labeled apolipoprotein C-III-1 (1 microgram/ml) was used as a model compound to study the adsorption. After 60 min about 45% was bound to the tube walls, and 5-10% bound rapidly to the pipette used for removing the solution from the tube. Addition of increasing amounts of non-labeled apolipoprotein C-I, C-II, C-III, or E to the tubes reduced the amount of labeled C-III on the tube walls, indicating a strong affinity of these apolipoproteins for the surface. The results demonstrate the importance of careful control of the different steps in immunological ultramicroquantitation methods, that might be influenced by adsorption-losses of the apolipoproteins.

Adsorption↗

Surface modification of Beckman Ultra-Clear centrifuge tubes for density gradient centrifugation of lipoproteins.

A simple procedure for coating the interior surface of Beckman Ultra-Clear centrifuge tubes with polyvinyl alcohol is described. The coated tubes are wettable and allow salt solutions to gravity-feed down their sides. This modification of the tubes permits the performance of previously developed density gradient and uniform density ultracentrifugation procedures for lipoprotein fractionation.

Centrifugation, Density Gradient↗

Quantitation of human serum very low density apolipoproteins C-I, C-II, C-III and E by enzyme immunoassay.

An enzyme immunoassay for human serum very low density apolipoproteins C-I, C-II, C-III and E is described. The assay is competitive and uses polystyrene tubes with adsorbed monospecific antibodies to which is added intact very low density lipoprotein (VLDL) conjugated with alkaline phosphatase. Conjugate containing all the different apolipoproteins complexed with lipids was used for quantitation of each individual aplipoprotein. The coefficients of variation were 7 and 10% for within-run and between-run reproducibility, respectively, for the range 50-100 ng apolipoprotein in the 0.5 ml sample. A comparison between apolipoprotein assays in intact and delipidated VLDL is presented.

Alkaline Phosphatase↗

Studies on the protein composition of human serum very low density lipoproteins with particular reference to the presence or absence of late pre-beta lipoprotein (Lp beta).

The amount of tetramethylurea and isopropanol soluble protein, total protein, triglycerides and cholesterol was determined in very low density lipoprotein (VLDL) showing either pre-beta mobility, or combined pre-beta and late pre-beta (Lp beta) or beta-mobility from twenty-two different sera. The ratios cholesterol to triglyceride of the VLDL preparations varied between 0.30 and 1.75. A very strong positive linear correlation between soluble protein and triglycerides over the whole range of VLDL preparations was obtained. There was no difference between sera with and without Lp beta for this relationship. When apolipoprotein B, was plotted against triglycerides, a weak correlation was obtained, and VLDL preparations without Lp beta separated into a group below the regression line, indicating that Lp beta is triglyceride poor in relation to apolipoprotein B. The corresponding plot against cholesterol gave a better correlation but with an even distribution of values of VLDL with and without Lp beta. Total and soluble protein put against cholesterol showed a pronounced tendency of VLDL with pure pre-beta mobility and those with Lp beta mobility to separate into groups, demonstrating that Lp beta is cholesterol rich relative to protein. The findings indicate that Lp beta-containing VLDL may represent the presence of a partly degraded VLDL.

Apolipoproteins↗

A simple Beckman DU accessory for location of proteins separated by isoelectric focusing in granulated gel layers: isolation of human serum very low density apolipoproteins C-II and C-III-1.

A simple, low-cost gel layer scanner has been developed for the Beckman DU spectrophotometer. The gel scanner makes it possible to localize zones precisely after preparative isoelectric focusing of proteins in 2-mm thick Sephadex G-200 layers. Using the scanner after isoelectric separation of a mixture of human serum apolipoproteins C-III-1 and C-II, pure proteis could easily be obtained.

Apolipoprotein C-II↗