SR-BI: Linking Cholesterol and Lipoprotein Metabolism with Breast and Prostate Cancer

被引:60
作者
Gutierrez-Pajares, Jorge L. [1 ]
Ben Hassen, Celine [1 ]
Chevalier, Stephan [1 ]
Frank, Philippe G. [1 ]
机构
[1] Univ Francois Rabelais Tours, Fac Med, INSERM Nutr Croissance & Canc UMR1069, Tours, France
关键词
SR-BI; cholesterol; lipoprotein; HDL cholesterol; breastcancer; HIGH-DENSITY-LIPOPROTEIN; RECEPTOR CLASS-B; INHIBITS CELL-PROLIFERATION; ACTIVATED PROTEIN-KINASE; PDZ-INTERACTING DOMAIN; ENDOTHELIAL-CELLS; PLASMA-MEMBRANE; SURFACE EXPRESSION; COLORECTAL-CANCER; SIGNALING CASCADE;
D O I
10.3389/fphar.2016.00338
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Studies have demonstrated the significant role of cholesterol and lipoprotein metabolism in the progression of cancer. The SCARB1 gene encodes the scavenger receptor class B type I (SR-BI), which is an 82-kDa glycoprotein with two transmembrane domains separated by a large extracellular loop. SR-BI plays an important role in the regulation of cholesterol exchange between cells and high-density lipoproteins. Accordingly, hepatic SR-BI has been shown to play an essential role in the regulation of the reverse cholesterol transport pathway, which promotes the removal and excretion of excess body cholesterol. In the context of atherosclerosis, SR-BI has been implicated in the regulation of intracellular signaling, lipid accumulation, foam cell formation, and cellular apoptosis. Furthermore, since lipid metabolism is a relevant target for cancer treatment, recent studies have focused on examining the role of SR-BI in this pathology. While signaling pathways have initially been explored in non-tumoral cells, studies with cancer cells have now demonstrated SR-BI's function in tumor progression. In this review, we will discuss the role of SR-BI during tumor development and malignant progression. In addition, we will provide insights into the transcriptional and post-transcriptional regulation of the SCARB1 gene. Overall, studying the role of SR-BI in tumor development and progression should allow us to gain useful information for the development of new therapeutic strategies.
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页数:9
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共 105 条
[1]  
ACTON SL, 1994, J BIOL CHEM, V269, P21003
[2]   Normal and pathological human testes express hormone-sensitive lipase and the lipid receptors CLA-1/SR-BI and CD36 [J].
Arenas, MI ;
Lobo, MVT ;
Caso, E ;
Huerta, L ;
Paniagua, R ;
Martín-Hidalgo, MA .
HUMAN PATHOLOGY, 2004, 35 (01) :34-42
[3]   Cholesterol binding, efflux, and a PDZ-interacting domain of scavenger receptor-BI mediate HDL-initiated signaling [J].
Assanasen, C ;
Mineo, C ;
Seetharam, D ;
Yuhanna, IS ;
Marcel, YL ;
Connelly, MA ;
Williams, DL ;
de la Llera-Moya, M ;
Shaul, PW ;
Silver, DL .
JOURNAL OF CLINICAL INVESTIGATION, 2005, 115 (04) :969-977
[4]   Cholesterol uptake in adrenal and gonadal tissues: The SR-BI and 'selective' pathway connection [J].
Azhar, S ;
Leers-Sucheta, S ;
Reaven, E .
FRONTIERS IN BIOSCIENCE-LANDMARK, 2003, 8 :S998-S1029
[5]   Murine SR-BI, a high density lipoprotein receptor that mediates selective lipid uptake, is N-glycosylated and fatty acylated and colocalizes with plasma membrane caveolae [J].
Babitt, J ;
Trigatti, B ;
Rigotti, A ;
Smart, EJ ;
Anderson, RGW ;
Xu, SZ ;
Krieger, M .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (20) :13242-13249
[6]   UniProt: a hub for protein information [J].
Bateman, Alex ;
Martin, Maria Jesus ;
O'Donovan, Claire ;
Magrane, Michele ;
Apweiler, Rolf ;
Alpi, Emanuele ;
Antunes, Ricardo ;
Arganiska, Joanna ;
Bely, Benoit ;
Bingley, Mark ;
Bonilla, Carlos ;
Britto, Ramona ;
Bursteinas, Borisas ;
Chavali, Gayatri ;
Cibrian-Uhalte, Elena ;
Da Silva, Alan ;
De Giorgi, Maurizio ;
Dogan, Tunca ;
Fazzini, Francesco ;
Gane, Paul ;
Cas-tro, Leyla Garcia ;
Garmiri, Penelope ;
Hatton-Ellis, Emma ;
Hieta, Reija ;
Huntley, Rachael ;
Legge, Duncan ;
Liu, Wudong ;
Luo, Jie ;
MacDougall, Alistair ;
Mutowo, Prudence ;
Nightin-gale, Andrew ;
Orchard, Sandra ;
Pichler, Klemens ;
Poggioli, Diego ;
Pundir, Sangya ;
Pureza, Luis ;
Qi, Guoying ;
Rosanoff, Steven ;
Saidi, Rabie ;
Sawford, Tony ;
Shypitsyna, Aleksandra ;
Turner, Edward ;
Volynkin, Vladimir ;
Wardell, Tony ;
Watkins, Xavier ;
Zellner, Hermann ;
Cowley, Andrew ;
Figueira, Luis ;
Li, Weizhong ;
McWilliam, Hamish .
NUCLEIC ACIDS RESEARCH, 2015, 43 (D1) :D204-D212
[7]   CD36, CLA-1 (CD36L1), AND LIMPII (CD36L2) GENE FAMILY - CELLULAR-DISTRIBUTION, CHROMOSOMAL LOCATION, AND GENETIC EVOLUTION [J].
CALVO, D ;
DOPAZO, J ;
VEGA, MA .
GENOMICS, 1995, 25 (01) :100-106
[8]  
CALVO D, 1993, J BIOL CHEM, V268, P18929
[9]   CLA-1 is an 85-kD plasma membrane glycoprotein that acts as a high-affinity receptor for both native (HDL, LDL, and VLDL) and modified (OxLDL and AcLDL) lipoproteins [J].
Calvo, D ;
GomezCoronado, D ;
Lasuncion, MA ;
Vega, MA .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 1997, 17 (11) :2341-2349
[10]   Cancer Cell Metabolism: One Hallmark, Many Faces [J].
Cantor, Jason R. ;
Sabatini, David M. .
CANCER DISCOVERY, 2012, 2 (10) :881-898