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D Pometta

Publications and source records attributed to D Pometta.

At least 55 records · Page 3Linked to original sources

Low density lipoprotein causes general cellular activation with increased phosphatidylinositol turnover and lipoprotein catabolism.

Low density lipoprotein (LDL), at concentrations high enough for receptor binding but not high enough to saturate the receptor, induces activation of phosphatidylinositol (PtdIns) turnover in a variety of cell types with various biological functions. Using both biochemical and electron microscopic studies, we have shown that blood platelets take up and degrade LDL in a manner reminiscent of phagocytic cell types. The activation of both PtdIns turnover and LDL metabolism is inhibited by high density lipoprotein. Thus, LDL at hormonal concentrations causes general cellular activation. Since all cell types studied responded to LDL with increased PtdIns turnover and uptake of LDL cholesterol, the PtdIns cycle may also be involved in the cellular regulation of LDL cholesterol metabolism.

Animals↗

Protein heterogeneity of lipoprotein particles containing apolipoprotein A-I without apolipoprotein A-II and apolipoprotein A-I with apolipoprotein A-II isolated from human plasma.

The protein heterogeneity of fractions isolated by immunoaffinity chromatography on anti-apolipoprotein A-I and anti-apolipoprotein A-II affinity columns was analyzed by high resolution two-dimensional gel electrophoresis. The two-dimensional gel electrophoresis profiles of the fractions were analyzed and automatically compared by the computer system MELANIE. Fractions containing apolipoproteins A-I + A-II and only A-I as the major protein components have been isolated from plasma and from high density lipoproteins prepared by ultracentrifugation. Similarities between the profiles of the fractions, as indicated by two-dimensional gel electrophoresis, suggested that those derived from plasma were equivalent to those from high density lipoproteins (HDL), which are particulate in nature. The established apolipoproteins (A-I, A-II, A-IV, C, D, and E) were visible and enriched in fractions from both plasma and HDL. However, plasma-derived fractions showed a much greater degree of protein heterogeneity due largely to enrichment in bands corresponding to six additional proteins. They were present in trace amounts in fractions isolated from HDL and certain of the proteins were visible in two-dimensional gel electrophoresis profiles of the plasma. These proteins are considered to be specifically associated with the immunoaffinity-isolated particles. They have been characterized in terms of Mr and pI. Computer-assisted measurements of protein spot-staining intensities suggest an asymmetric distribution of the proteins (as well as the established apolipoproteins), with four showing greater prominence in particles containing apolipoprotein A-I but no apolipoprotein A-II.

Apolipoprotein A-I↗

HDL particle associated proteins in plasma and cerebrospinal fluid: identification and partial sequencing.

The proteins from plasma HDL particles isolated by immunoaffinity chromatography on anti-apolipoprotein A-1 affinity columns have been analysed and purified by high resolution two dimensional gel electrophoresis. Two of the lipoprotein-associated proteins found in the HDL plasma fraction, previously referred to as NA1 and NA2, have also been found in cerebrospinal fluid. After separation by 2DGE, these two proteins were transferred to PVDF membranes, stained and cut out for N-terminal sequencing. The partial sequences (11 and 13 amino acids) obtained for the two HDL particle associated proteins do not match any of those included in the December 1987 National Biomedical Research Foundation (NBRF) database, and there are no significant sequence similarities.

Amino Acid Sequence↗

[Apoprotein E (apo E) phenotype and serum lipids in diabetics].

Apo E isoforms have been determined among diabetics. The allele distribution epsilon 2, epsilon 3 and epsilon 4 does not differ from the control population. Diabetics with epsilon 2 allele have increased serum triglycerides compared to diabetics with epsilon 3 and epsilon 4 alleles. In diabetics with E2/2 phenotype both serum cholesterol and serum triglycerides are elevated. The phenotype of apoprotein E does influence serum lipids in diabetics.

Alleles↗

Interference of dimethyl alpha-(dimethoxyphosphinyl) p-chlorobenzyl phosphate (SR-202) in thyroid hormone metabolism: evidence of inhibition of monodeiodination.

SR-202 is a non-iodinated potential lipid-altering agent. When administered (100 mg) three times per day for 3 days to six euthyroid subjects it was associated with a 30 +/- 3% (mean +/- S.E.M.) fall in 3,3',5-triiodothyronine (T3) (P less than 0.001), a reciprocal 104 +/- 14% rise in 3,3',5'-tri-iodothyronine (reverse T3, rT3) (P less than 0.01), and a 37 +/- 7% rise in thyroxine (T4) (P less than 0.001). Basal and TRH-stimulated TSH did not change. These results suggested that SR-202 was acting as an inhibitor of the peripheral monodeiodination of T4 to T3. During a second study the same subjects received the same dose of SR-202 for a further 3 days following 15 days of progressive substitutive treatment with L-T4, which they continued to take at 200 micrograms/day until the end of the study. Despite higher levels of thyroid hormones in the substituted subjects, similar results were observed, serum T3 falling by 40 +/- 2% (P less than 0.001), serum rT3 and T4 rising by 168 +/- 24% (P less than 0.01) and 37 +/- 9% (P less than 0.01) respectively. These changes provide compelling evidence that SR-202 is an inhibitor of the peripheral conversion of T4 to T3 that acts on thyroid hormone metabolism without provoking a counter-regulatory pituitary response. It might prove to be a useful tool for the clinical investigation of thyroid function.

Organophosphorus Compounds↗

HDL cholesterol levels in patients with myocardial infarction and their families.

The present study using a quartile distribution of myocardial infarction patients demonstrated that the first-degree relatives of the myocardial infarction patients with the lowest HDL cholesterol have similarly the lowest HDL cholesterol. Low HDL cholesterol among these relatives was not secondary to increased VLDL triglycerides, as it persisted when subjects with hyper VLDL triglycerides were excluded. Familial low HDL cholesterol could not be attributed to known environmental factors as their levels did not differ significantly between the groups compaired. There was a significant correlation between HDL cholesterol levels of the parents and that of their younger offspring. The correlation was not significant with the offspring aged 20 and over. It appeared that there was a familial trend in low HDL cholesterol levels, more apparent among the young offspring than among the adult offspring, who may possibly not share any more the parental environment for factors liable to influence HDL cholesterol. This finding is compatible with a hereditary trait.

Adult↗

Apoprotein D in a healthy, male population and in male myocardial infarction patients and their male, first-degree relatives.

This report examines the correlation of serum apoprotein D with other lipoprotein lipids and apoproteins in a healthy, male population and compares the levels of high density lipoprotein apoprotein D of this control population with 2 samples composed of male, acute myocardial infarction patients and their healthy, male, first-degree relatives. Highly significant correlations were observed with very low density lipoprotein lipids (negative), high density lipoprotein lipids (positive) and serum triglycerides (negative). Serum and low density lipoprotein apoprotein B was not correlated with serum apoprotein D, whereas apoprotein A-I from serum and high density lipoproteins was strongly correlated with apoprotein D. A significant reduction in high density lipoprotein apoprotein D was observed in male, myocardial infarction patients. Their male, first-degree relatives also had lower apoprotein D levels, but the difference was not significant.

Adult↗

[Relation between HDL cholesterol and fasting glycemia in a normal population and a diabetic group].

An inverse relationship exists between the levels of HDL-cholesterol and fasting blood sugar in a control population (active men, n = 522) and a group of diabetics. The diabetics also have reduced apoprotein A-I levels (98.7 +/- 21.0 U/l) in comparison with normoglycemic controls (115.0 +/- 8.3 U/l). Given the role that the HDL fraction has been suggested to exercise in the development of atherosclerosis, the inverse relationship described above could be involved in determining the extent of cardiovascular disease in diabetics.

Adult↗

[Dietary lipids and serum lipids in adolescents, based on the Geneva study of the precursors of atherosclerosis].

The relationship between serum lipids and nutrition, physical activity and body mass index were studies with a multifactorial analysis of variance in a group of 160 adolescents of both sexes (Table I). These relationships are complex and difficult to demonstrate; they give rise, however, to certain considerations of presumptive characteristics possibly linked with adolescence.

Adolescent↗