Abstract
Using circulating mononuclear cells as a readily available tissue and using the rate of high affinity degradation of 125-I-labeled low density lipoprotein (LDL) as an index of cell surface LDL receptor activity, we have measured receptor activity in cells from 53 individuals. This group includes 32 healthy subjects, 15 subjects with the heterozygous form of familial hypercholesterolemia, and 6 subjects with hyperlipidemic disorders other than familial hypercholesterolemia. 7 of the healthy subjects and 10 of the heterozygotes were members of a single large kindred with five-generation transmission of the mutant familial hypercholesterolemia gene. LDL receptor activity was assayed in blood mononuclear cells under two sets of conditions. First, 125I-LDL degradation was measured in purified lymphocytes that had been incubated for 3 days in the absence of lipoproteins so as to induce a high level of LDL receptor activity. Phase-contrast autoradiograms of cells incubated with 125I-LDL and electron micrographs of cells incubated with ferritin-labeled LDL confirmed the existence of LDL receptors on lymphocytes. Second, 125I-LDL degradation was measured in mixed mononuclear cells (85-90% lymphocytes and 5-15% monocytes) immediately after their isolation from the bloodstream. This assay represented an attempt to assess the number of receptors actually expressed on the cells when they were in the circulation. Under both sets of conditions, cells from the familial hypercholesterolemia heterozygotes expressed an average of about one-half the normal number of LDL receptors. The current findings are consistent with the conclusion that heterozygotes with familial hypercholesterolemia possess only one functional allele at the LDL receptor locus and that the consequent deficiency of LDL receptors produces the clinical syndrome of heterozygous familial hypercholesterolemia.
MeSH Terms
Adhesiveness
Adolescent
Adult
Aged
Cell Membrane/metabolism
Child
Female
Ferritins/metabolism
Heterozygote
Humans
Hypercholesterolemia/blood,genetics,pathology
Lipoproteins, LDL/blood,genetics
Lymphocytes/metabolism,ultrastructure
Male
Microscopy, Electron
Microscopy, Phase-Contrast
Middle Aged
Monocytes/metabolism
Pedigree
Protein Binding
Receptors, Drug/genetics,metabolism
Chemicals
Lipoproteins, LDL
Receptors, Drug
Ferritins
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Bilheimer D W
Ho Y K
Brown M S
Anderson R G
Goldstein J L
References (17)
17 references, click to expand
-
Protein measurement with the Folin phenol reagent.
J Biol Chem. 1951 Nov;193(1):265-75
PMID: 14907713
-
The low-density lipoprotein pathway and its relation to atherosclerosis.
Annu Rev Biochem. 1977;46:897-930
PMID: 197883
-
Regulation of the activity of the low density lipoprotein receptor in human fibroblasts.
Cell. 1975 Nov;6(3):307-16
PMID: 212203
-
Genetics of the LDL receptor: evidence that the mutations affecting binding and internalization are allelic.
Cell. 1977 Nov;12(3):629-41
PMID: 200368
-
Regulation of cholesterol synthesis by low density lipoprotein in isolated human lymphocytes. Comparison of cells from normal subjects and patients with homozygous familial hypercholesterolemia and abetalipoproteinemia.
J Exp Med. 1977 Jun 1;145(6):1531-49
PMID: 194011
-
Role of the coated endocytic vesicle in the uptake of receptor-bound low density lipoprotein in human fibroblasts.
Cell. 1977 Mar;10(3):351-64
PMID: 191195
-
Regulation of low density lipoprotein receptor activity in freshly isolated human lymphocytes.
J Clin Invest. 1976 Dec;58(6):1465-74
PMID: 186492
-
Heterozygous familial hypercholesterolemia: failure of normal allele to compensate for mutant allele at a regulated genetic locus.
Cell. 1976 Oct;9(2):195-203
PMID: 184960
-
Binding and degradation of low density lipoproteins by cultured human fibroblasts. Comparison of cells from a normal subject and from a patient with homozygous familial hypercholesterolemia.
J Biol Chem. 1974 Aug 25;249(16):5153-62
PMID: 4368448
-
Expression of the familial hypercholesterolemia gene in heterozygotes: model for a dominant disorder in man.
Trans Assoc Am Physicians. 1974;87:120-31
PMID: 4376290
-
Regulation of 3-hydroxy-3-methylglutaryl coenzyme A reductase activity in cultured human fibroblasts. Comparison of cells from a normal subject and from a patient with homozygous familial hypercholesterolemia.
J Biol Chem. 1974 Feb 10;249(3):789-96
PMID: 4359767
-
The metabolism of low density lipoprotein in familial type II hyperlipoproteinemia.
J Clin Invest. 1972 Jun;51(6):1528-36
PMID: 4336943
-
Familial hypercholesterolemia: A genetic defect in the low-density lipoprotein receptor.
N Engl J Med. 1976 Jun 17;294(25):1386-90
PMID: 177875
-
Localization of low density lipoprotein receptors on plasma membrane of normal human fibroblasts and their absence in cells from a familial hypercholesterolemia homozygote.
Proc Natl Acad Sci U S A. 1976 Jul;73(7):2434-8
PMID: 181751
-
Receptor-mediated control of cholesterol metabolism.
Science. 1976 Jan 16;191(4223):150-4
PMID: 174194
-
Hyperlipidemia in coronary heart disease. II. Genetic analysis of lipid levels in 176 families and delineation of a new inherited disorder, combined hyperlipidemia.
J Clin Invest. 1973 Jul;52(7):1544-68
PMID: 4718953
-
Familial hypercholesterolemia in a large indred. Evidence for a monogenic mechanism.
Ann Intern Med. 1972 May;76(5):711-20
PMID: 5025321