Blunted feedback suppression of SREBP processing by dietary cholesterol in transgenic mice expressing sterol-resistant SCAP(D443N)

被引:61
作者
Korn, BS
Shimomura, I
Bashmakov, Y
Hammer, RE
Horton, JD
Goldstein, JL
Brown, MS
机构
[1] Univ Texas, SW Med Ctr, Dept Mol Genet, Dallas, TX 75235 USA
[2] Univ Texas, SW Med Ctr, Dept Biochem, Dallas, TX 75235 USA
[3] Univ Texas, SW Med Ctr, Howard Hughes Med Inst, Dallas, TX 75235 USA
关键词
cholesterol; fatty acids; sterol regulatory element-binding proteins; SCAP; transgenic mice;
D O I
10.1172/JCI5341
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Feedback regulation of cholesterol biosynthesis is mediated by membrane-bound transcription factors designated sterol regulatory element-binding proteins (SREBP)-1 and -2, In sterol-deprived cultured cells, SREBPs are released from membranes by a proteolytic process that is stimulated by SREBP cleavage-activating protein (SCAP), a membrane protein containing a sterol-sensing domain. Sterols suppress SREBP cleavage by blocking the action of SCAP, thereby decreasing cholesterol synthesis, A point mutation in SCAP(D443N) causes resistance to sterol suppression. In this article, we produced transgenic mice that express mutant SCAP(D443N) in liver, In these livers the nuclear content of SREBP-1 and -2 was increased, mRNAs encoding proteins involved in uptake and synthesis of cholesterol and fatty acids were elevated, and the livers were engorged with cholesteryl esters and triglycerides enriched in monounsaturated fatty acids. When the mice were challenged with a high cholesterol diet, cleavage of SREBP-1 and -2 was reduced in wild-type livers and less so in transgenic livers. We conclude that SCAP(D443N) stimulates proteolytic processing of native SREBPs in liver and decreases the normal sterol-mediated feedback regulation of SREBP cleavage, suggesting a central role for SCAP as a sterol sensor in liver.
引用
收藏
页码:2050 / 2060
页数:11
相关论文
共 46 条
[1]   STEROL REGULATION OF FATTY-ACID SYNTHASE PROMOTER - COORDINATE FEEDBACK-REGULATION OF 2 MAJOR LIPID PATHWAYS [J].
BENNETT, MK ;
LOPEZ, JM ;
SANCHEZ, HB ;
OSBORNE, TF .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (43) :25578-25583
[2]   The SREBP pathway: Regulation of cholesterol metabolism by proteolysis of a membrane-bound transcription factor [J].
Brown, MS ;
Goldstein, JL .
CELL, 1997, 89 (03) :331-340
[3]  
BUCOLO G, 1973, CLIN CHEM, V19, P476
[4]  
CHANG TY, 1980, J BIOL CHEM, V255, P7787
[5]   RECOVERY OF DNA SEGMENTS FROM AGAROSE GELS [J].
CHEN, CW ;
THOMAS, CA .
ANALYTICAL BIOCHEMISTRY, 1980, 101 (02) :339-341
[6]   Cleavage site for sterol-regulated protease localized to a Leu-Ser bond in the lumenal loop of sterol regulatory element-binding protein-2 [J].
Duncan, EA ;
Brown, MS ;
Goldstein, JL ;
Sakai, J .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (19) :12778-12785
[7]   Second-site cleavage in sterol regulatory element-binding protein occurs at transmembrane junction as determined by cysteine panning [J].
Duncan, EA ;
Davé, UP ;
Sakai, J ;
Goldstein, JL ;
Brown, MS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (28) :17801-17809
[8]   Identification of glycerol-3-phosphate acyltransferase as an adipocyte determination and differentiation factor 1- and sterol regulatory element-binding protein-responsive gene [J].
Ericsson, J ;
Jackson, SM ;
Kim, JB ;
Spiegelman, BM ;
Edwards, PA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (11) :7298-7305
[9]   Synergistic binding of sterol regulatory element-binding protein and NF-Y to the farnesyl diphosphate synthase promoter is critical for sterol-regulated expression of the gene [J].
Ericsson, J ;
Jackson, SM ;
Edwards, PA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (40) :24359-24364
[10]   MEMBRANE-BOUND DOMAIN OF HMG COA REDUCTASE IS REQUIRED FOR STEROL-ENHANCED DEGRADATION OF THE ENZYME [J].
GIL, G ;
FAUST, JR ;
CHIN, DJ ;
GOLDSTEIN, JL ;
BROWN, MS .
CELL, 1985, 41 (01) :249-258