Two different classes of hamster cell mutants (25RA cells and M1 cells) express opposite phenotypes in sterol dependent regulation. In 25RA cells, sterols added in growth medium fail to cause down−regulation of sterol synthesis rate and low density lipoprotein (LDL) receptor activity, while in M1 cells, removal of lipids from growth medium fail to cause up−regulation of sterol synthesis rate and LDL receptor activity. Cell hybridization analysis showed that the 25RA phenotype is semidominant, while the M1 phenotype is recessive. Using 25RA as the parental cells, we isolated eight independent mutant cells (DM cells) and showed that all of them belong to the same genetic complementation group as the M1 mutant, indicating that the normal (unmu...
AIMS: To investigate the disease causing event in patients with familial hypercholesterolaemia, carr...
Familial hypercholesterolemia (FH) is an autosomal dominant genetic disease caused mainly by LDL rec...
AbstractThrough expression cloning we have isolated a cDNA-encoding SREBP cleavage–activating protei...
Two different classes of hamster cell mutants (25RA cells and M1 cells) express opposite phenotypes ...
Two different classes of hamster cell mutants (25RA cells and M1 cells) express opposite phenotypes ...
We have isolated several non−leaky mutant Chinese hamster ovary (CHO) cell clones (M4, M19, and M21)...
We have isolated several non-leaky mutant Chinese hamster ovary (CHO) cell clones (M4, M19, and M21)...
Cholesterol biosynthesis and uptake are controlled by a classic end product-feedback mechanism where...
The approach of somatic cell and molecular genetics for the study of intracellular regulation of cho...
Somatic cell genetics is a powerful approach for unraveling the regulatory mechanism of cholesterol ...
Somatic cell genetics is a powerful approach for unraveling the regulatory mechanism of cholesterol ...
Chinese hamster ovary cell mutants defective in the NPC1 gene (NPCl-trap) were gen-erated by retrovi...
Somatic cell genetics is a powerful approach for unraveling the regulatory mechanism of cholesterol ...
We describe a line of mutant Chinese hamster ovary cells, designated SRD-13A, that cannot cleave ste...
Two lines of Chinese hamster lung (Dede) cells which are resistant to the killing effect of 25-hydro...
AIMS: To investigate the disease causing event in patients with familial hypercholesterolaemia, carr...
Familial hypercholesterolemia (FH) is an autosomal dominant genetic disease caused mainly by LDL rec...
AbstractThrough expression cloning we have isolated a cDNA-encoding SREBP cleavage–activating protei...
Two different classes of hamster cell mutants (25RA cells and M1 cells) express opposite phenotypes ...
Two different classes of hamster cell mutants (25RA cells and M1 cells) express opposite phenotypes ...
We have isolated several non−leaky mutant Chinese hamster ovary (CHO) cell clones (M4, M19, and M21)...
We have isolated several non-leaky mutant Chinese hamster ovary (CHO) cell clones (M4, M19, and M21)...
Cholesterol biosynthesis and uptake are controlled by a classic end product-feedback mechanism where...
The approach of somatic cell and molecular genetics for the study of intracellular regulation of cho...
Somatic cell genetics is a powerful approach for unraveling the regulatory mechanism of cholesterol ...
Somatic cell genetics is a powerful approach for unraveling the regulatory mechanism of cholesterol ...
Chinese hamster ovary cell mutants defective in the NPC1 gene (NPCl-trap) were gen-erated by retrovi...
Somatic cell genetics is a powerful approach for unraveling the regulatory mechanism of cholesterol ...
We describe a line of mutant Chinese hamster ovary cells, designated SRD-13A, that cannot cleave ste...
Two lines of Chinese hamster lung (Dede) cells which are resistant to the killing effect of 25-hydro...
AIMS: To investigate the disease causing event in patients with familial hypercholesterolaemia, carr...
Familial hypercholesterolemia (FH) is an autosomal dominant genetic disease caused mainly by LDL rec...
AbstractThrough expression cloning we have isolated a cDNA-encoding SREBP cleavage–activating protei...