Identification of distinct surface-expressed and intracellular CXC-chemokine receptor 2 glycoforms in neutrophils:: N-glycosylation is essential for maintenance of receptor surface expression

被引:58
作者
Ludwig, A [1 ]
Ehlert, JE [1 ]
Flad, HD [1 ]
Brandt, E [1 ]
机构
[1] Forschungsinst Borstel, Dept Immunol & Cell Biol, D-23845 Borstel, Germany
关键词
D O I
10.4049/jimmunol.165.2.1044
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
The G protein-coupled CXC-chemokine receptor CXCR-2 mediates activation of neutrophil effector functions in response to multiple ligands, including IL-8 and neutrophil-activating peptide 2 (NAP-2). Although CXCR-2 has been successfully cloned and expressed in several cell lines, the molecular properties of the native neutrophil-expressed receptor have remained largely undefined, Here we report on the identification and characterization of distinct CXCR-2 glycoforms and their subcellular distribution in neutrophils, Immunoprecipitation and Western blot analyses of surface-expressed receptors covalently linked to IL-8 or NAP-2 as well as in their unloaded state revealed the occurrence of a single CXCR-2 variant with an apparent size of 56 kDa. According to deglycosylation experiments surface-expressed CXCR-2 carries two N-linked 9-kDa carbohydrate moieties that are both of complex structure. In addition, two other CXCR-2 variants of 38 and 40 kDa were found to occur exclusively intracellular and to carry N-glycosylations of high mannose or hybrid type, These receptors did not participate in ligand-induced receptor trafficking, while surface-expressed CXCR-2 was internalized and re-expressed following stimulation with NAP-2, By enzymatic removal of one 9-kDa carbohydrate moiety in surface-expressed CXCR-2 we can show that neither NAP-2-induced trafficking nor signaling of the receptor is dependent on its full glycosylation, Instead, glycosylation was found to protect CXCR-2 from proteolytic attack, as even partial deglycosylation is associated with serine protease-mediated disappearance of the receptor from the neutrophil surface, Thus, although not directly involved in signaling, glycosylation appears to be required to maintain neutrophil responsiveness to CXC-chemokines during inflammation.
引用
收藏
页码:1044 / 1052
页数:9
相关论文
共 34 条
[1]   The CXC chemokines growth-regulated oncogene (GRO) alpha, GRO beta, GRO gamma, neutrophil-activating peptide-2, and epithelial cell-derived neutrophil-activating peptide-78 are potent agonists for the type B, but not the type A, human interleukin-8 receptor [J].
Ahuja, SK ;
Murphy, PM .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (34) :20545-20550
[2]  
Asagoe K, 1998, J IMMUNOL, V160, P4518
[3]   IL-8 and NAP-2 differ in their capacities to bind and chemoattract 293 cells transfected with either IL-8 receptor type A or type B [J].
BenBaruch, A ;
Bengali, K ;
Tani, K ;
Xu, LL ;
Oppenheim, JJ ;
Wang, JM .
CYTOKINE, 1997, 9 (01) :37-45
[4]   CROSS-LINKING OF HUMAN NEUTROPHIL SURFACE-PROTEINS TO IODINATED INTERLEUKIN-8 OR NEUTROPHIL-ACTIVATING PEPTIDE-2 RESULTS IN AT LEAST 4 SEPARABLE PROTEINS [J].
BESEMER, J ;
SCHNITZEL, W ;
MONSCHEIN, U ;
RYFFEL, B .
CYTOKINE, 1993, 5 (05) :512-519
[5]   Role of glycosylation in expression and function of the human parathyroid hormone parathyroid hormone-related protein receptor [J].
Bisello, A ;
Greenberg, Z ;
Behar, V ;
Rosenblatt, M ;
Suva, LJ ;
Chorev, M .
BIOCHEMISTRY, 1996, 35 (49) :15890-15895
[6]   NEUTROPHILS CAN GENERATE THEIR ACTIVATOR NEUTROPHIL-ACTIVATING PEPTIDE-2 BY PROTEOLYTIC CLEAVAGE OF PLATELET-DERIVED CONNECTIVE TISSUE-ACTIVATING PEPTIDE-III [J].
BRANDT, E ;
VANDAMME, J ;
FLAD, HD .
CYTOKINE, 1991, 3 (04) :311-321
[7]  
CHUNTHARAPAI A, 1995, J IMMUNOL, V155, P2587
[8]   Mutagenesis of N-glycosylation sites in the human vasoactive intestinal peptide 1 receptor. Evidence that asparagine 58 or 69 is crucial for correct delivery of the receptor to plasma membrane [J].
Couvineau, A ;
Fabre, C ;
Gaudin, P ;
Maoret, JJ ;
Laburthe, M .
BIOCHEMISTRY, 1996, 35 (06) :1745-1752
[9]  
GROB PM, 1990, J BIOL CHEM, V265, P8311
[10]   STRUCTURE AND FUNCTIONAL EXPRESSION OF A HUMAN INTERLEUKIN-8 RECEPTOR [J].
HOLMES, WE ;
LEE, J ;
KUANG, WJ ;
RICE, GC ;
WOOD, WI .
SCIENCE, 1991, 253 (5025) :1278-1280