Differential insertion of GPI-anchored GFPs into lipid rafts of live cells

被引:95
作者
Legler, DF
Doucey, MA
Schneider, P
Chapatte, L
Bender, FC
Bron, C
机构
[1] Univ Konstanz, Dept Biol, Div Immunol, D-78457 Constance, Germany
[2] Univ Lausanne, Inst Biochem, BIL Biomed Res Ctr, CH-1066 Epalinges, Switzerland
关键词
glycosylphosphatidyl-inositol; green fluorescent protein;
D O I
10.1096/fj.03-1338fje
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
Partitioning of proteins in cholesterol and sphingolipid enriched plasma membrane microdomains, called lipid rafts, is critical for many signal transduction and protein sorting events. Although raft partitioning of many signaling molecules remains to be determined, glycosylphosphatidyl-inositol (GPI)-anchored proteins possess high affinity for lipid rafts and are currently exploited as markers to investigate fundamental mechanisms in protein sorting and signal transduction events. In this study, we demonstrate that two recombinant GPI-anchored green fluorescent proteins (GFP-GPIs) that differ in their GPI signal sequence confer distinct localization in plasma membrane microdomains. GFP fused to the GPI signal of the decay accelerating factor GFP-GPI(DAF) partitioned exclusively in lipid rafts, whereas GFP fused to the GPI signal of TRAIL-R3, GFP-GPI(TRAIL-R3), associated only minimally with microdomains. In addition, we investigated the unique ability of purified GFP-GPIs to insert into membrane microdomains of primary lymphocytes. This cell surface painting allows rapid, stable, and functional association of the GPI-anchored proteins with the target cell plasma membrane. The distinct membrane localization of the two GFP-GPIs was observed irrespective of whether the GPI-anchored molecules were painted or transfected. Furthermore, we show that painted GFP-GPI(DAF) was totally dependent on the GPI anchor and that the membrane insertion was increased by the addition of raft-associated lipids such as cholesterol, sphingomyelin, and dipalmitoyl-phosphatidylethanolamine. Thus, this study provides evidence that different GPI signal sequences lead to distinct membrane microdomain localization and that painted GFP-GPI(DAF) serves as an excellent fluorescent marker for lipid rafts in live cells.
引用
收藏
页码:73 / +
页数:20
相关论文
共 51 条
[1]
Anthrax toxin triggers endocytosis of its receptor via a lipid raft-mediated clathrin-dependent process [J].
Abrami, L ;
Liu, SH ;
Cosson, P ;
Leppla, SH ;
van der Goot, FG .
JOURNAL OF CELL BIOLOGY, 2003, 160 (03) :321-328
[2]
Cell biology - A role for lipid shells in targeting proteins to caveolae, rafts, and other lipid domains [J].
Anderson, RGW ;
Jacobson, K .
SCIENCE, 2002, 296 (5574) :1821-1825
[3]
BORDIER C, 1981, J BIOL CHEM, V256, P1604
[4]
The immunological synapse [J].
Bromley, SK ;
Burack, WR ;
Johnson, KG ;
Somersalo, K ;
Sims, TN ;
Sumen, C ;
Davis, MM ;
Shaw, AS ;
Allen, PM ;
Dustin, ML .
ANNUAL REVIEW OF IMMUNOLOGY, 2001, 19 :375-396
[5]
Structure and function of sphingolipid- and cholesterol-rich membrane rafts [J].
Brown, DA ;
London, E .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (23) :17221-17224
[6]
SORTING OF GPI-ANCHORED PROTEINS TO GLYCOLIPID-ENRICHED MEMBRANE SUBDOMAINS DURING TRANSPORT TO THE APICAL CELL-SURFACE [J].
BROWN, DA ;
ROSE, JK .
CELL, 1992, 68 (03) :533-544
[7]
Incorporation of leucocyte GPI-anchored proteins and protein tyrosine kinases into lipid-rich membrane domains of COS-7 cells [J].
Cebecauer, M ;
Cerny, J ;
Horejsí, V .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1998, 243 (03) :706-710
[8]
The GPI-anchor and protein sorting [J].
Chatterjee, S ;
Mayor, S .
CELLULAR AND MOLECULAR LIFE SCIENCES, 2001, 58 (14) :1969-1987
[9]
Comparative efficiencies of C-terminal signals of native glycophosphatidylinositol (GPI)-anchored proproteins in conferring GPI-anchoring [J].
Chen, R ;
Knez, JJ ;
Merrick, WC ;
Medof, ME .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2002, 84 (01) :68-83
[10]
PRIM:: Proximity imaging of green fluorescent protein-tagged polypeptides [J].
De Angelis, DA ;
Miesenböck, G ;
Zemelman, BV ;
Rothman, JE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (21) :12312-12316