Receptor-mediated endocytosis of low density lipoprotein: somatic cell mutants define multiple genes required for
Abstract:
We have used cell fusion and mutant reversion analysis to study a collection of Chinese hamster ovary (CHO) cell mutants that are unable to bind and internalize low density lipoprotein (LDL). Pairwise cell fusions show that these LDL receptor-deficient mutants fall into three recessive complementation groups, ldlA, ldlB, and ldlC. Complementation was detected by observing the uptake of fluorescent LDL and was quantitated by measuring the degradation of 125I-labeled LDL by isolated hybrid cells. Previous studies had defined a fourth recessive complementation group, ldlD. Complementation tests between CHO cells and human fibroblasts suggested that the defects in mutants of the ldlA complementation group are analogous to those in a patient with homozygous familial hypercholesterolemia. A revertant of an ldlA mutant was isolated and appeared to be heterozygous at the ldlA locus. The phenotype of this revertant was similar to that of cells from patients with the heterozygous form of familial hypercholesterolemia. Together with recent DNA transfection studies, these results suggest that the ldlA locus is the structural gene for the LDL receptor in CHO cells. Mutants in the ldlB, ldlC, and ldlD complementation groups must have defects in genes that are required for either the regulation, synthesis, transport, recycling, or turnover of LDL receptors.
Insights
Researchers identified the low-density lipoprotein (LDL) receptor gene in Chinese hamster ovary cells using cell fusion and mutant reversion. This finding helps understand familial hypercholesterolemia and LDL receptor function.
Area of Science:
- Cell Biology
- Genetics
- Molecular Biology
Background:
- Chinese hamster ovary (CHO) cell mutants lacking low-density lipoprotein (LDL) binding and internalization capabilities were studied.
- Understanding the genetic basis of LDL receptor function is crucial for metabolic disease research.
Purpose of the Study:
- To genetically characterize CHO cell mutants deficient in LDL uptake.
- To identify the specific genes and complementation groups involved in LDL receptor pathways.
Main Methods:
- Cell fusion experiments were performed to assess complementation between different LDL receptor-deficient mutants.
- Mutant reversion analysis and DNA transfection studies were utilized.
- Fluorescent LDL uptake and 125I-labeled LDL degradation assays quantified complementation.
Main Results:
- Three recessive complementation groups (ldlA, ldlB, ldlC) were identified among the CHO cell mutants.
- The ldlA complementation group defects are analogous to human homozygous familial hypercholesterolemia.
- A revertant of an ldlA mutant exhibited a phenotype similar to heterozygous familial hypercholesterolemia, suggesting ldlA is the structural gene for the LDL receptor.
Conclusions:
- The ldlA locus in CHO cells encodes the structural gene for the LDL receptor.
- Mutations in ldlB, ldlC, and ldlD complementation groups affect genes regulating LDL receptor expression or function.
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