PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
August 1, 1987Journal of Clinical Investigation888 citationsOpen Access

Lp(a) glycoprotein phenotypes. Inheritance and relation to Lp(a)-lipoprotein concentrations in plasma.

View Full Paper
GUGerd UtermannHMH. MenzelHKH.G. Kraft

Key Points

  • Determine the size heterogeneity, mode of genetic inheritance, and quantitative plasma concentration relationships of lipoprotein(a) glycoprotein phenotypes.
  • Analyzed human serum samples using SDS-gel electrophoresis under reducing conditions followed by immunoblotting with anti-Lp(a) serum.
  • Treated isolated Lp(a) glycoprotein with neuraminidase and conducted family studies to assess inheritance patterns across pedigrees.
  • Identified six glycoprotein phenotypes (F, B, S1, S2, S3, S4) with molecular weights from 400,000 to 700,000 Da, controlled by autosomal alleles at a single locus.
  • Demonstrated a significant association between phenotype and plasma concentration, with phenotypes B, S1, and S2 associating with high levels and S3 and S4 with low levels.

Abstract

The Lp(a) lipoprotein represents a quantitative genetic trait. It contains two different polypeptide chains, the Lp(a) glycoprotein and apo B-100. We have demonstrated the Lp(a) glycoprotein directly in human sera by sodium dodecyl sulfate-gel electrophoresis under reducing conditions after immunoblotting using anti-Lp(a) serum and have observed inter- and intraindividual size heterogeneity of the glycoprotein with apparent molecular weights ranging from approximately 400,000-700,000 D. According to their relative mobilities compared with apo B-100 Lp(a) patterns were categorized into phenotypes F (faster than apo B-100), B (similar to apo B-100), S1, S2, S3, and S4 (all slower than apo B-100), and into the respective double-band phenotypes. Results from neuraminidase treatment of isolated Lp(a) glycoprotein indicate that the phenotypic differences do not reside in the sialic acid moiety of the glycoprotein. Family studies are compatible with the concept that Lp(a) glycoprotein phenotypes are controlled by a series of autosomal alleles (LpaF, LpaB, LpaS1, LpaS2, LpaS3, LpaS4, and Lpa0) at a single locus. Comparison of Lp(a) plasma concentrations in different phenotypes revealed a highly significant association of phenotype with concentration. Phenotypes B, S1, and S2 are associated with high and phenotypes S3 and S4 with low Lp(a) concentrations. This suggests that the same gene locus is involved in determining Lp(a) glycoprotein phenotypes and Lp(a) lipoprotein concentrations in plasma and is the first indication for structural differences underlying the quantitative genetic Lp(a)-trait.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Utermann et al. (1987) studied this question.

synapsesocial.com/papers/697b2442e73565ae06777aa1https://doi.org/10.1172/jci113093
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Fat feeding in humans induces lipoproteins of density less than 1.006 that are enriched in apolipoprotein [a] and that cause lipid accumulation in macrophages.1986 · 127 citations
  2. 2Immunochemical quantification of human plasma Lp(a) lipoprotein1974 · 218 citations
  3. 3Isolation, characterization, and uptake in human fibroblasts of an apo(a)-free lipoprotein obtained on reduction of lipoprotein(a)1985 · 225 citations
  4. 4Immunohistochemical localization of barley stripe mosaic virions in infected wheat cells1983 · 60 citations
  5. 5Separation of plasma lipoproteins by density-gradient ultracentrifugation1975 · 1,117 citations