Receptor activation and 2 distinct COOH-terminal motifs control G-CSF receptor distribution and internalization kinetics

被引:53
作者
Aarts, LHJ [1 ]
Roovers, O [1 ]
Ward, AC [1 ]
Touw, IP [1 ]
机构
[1] Erasmus Univ, Med Ctr, Inst Hematol, Rotterdam, Netherlands
关键词
D O I
10.1182/blood-2003-07-2250
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
We have studied the intracellular distribution and internalization kinetics of the granulocyte colony-stimulating factor receptor (G-CSF-R) in living cells using fusion constructs of wild-type or mutant G-CSF-R and enhanced green fluorescent protein (EGFP). Under steady-state conditions the G-CSF-R localized predominantly to the Golgi apparatus, late endosomes, and lysosomes, with only low expression on the plasma membrane, resulting from spontaneous internalization. Internalization of the G-CSF-R was significantly accelerated by addition of G-CSF. This ligand-induced switch from slow to rapid internalization required the presence of G-CSF-R residue Trp650, previously shown to be essential for its signaling ability. Both spontaneous and ligand-induced internalization depended on 2 distinct amino acid stretches in the G-CSF-R COOH-terminus: 749-755, containing a dileucine internalization motif, and 756-769. Mutation of Ser749 at position -4 of the dileucine motif to Ala significantly reduced the rate of ligand-induced internalization. In contrast, mutation of Ser749 did not affect spontaneous G-CSF-R internalization, suggesting the involvement of a serine-threonine kinase specifically in ligand-accelerated internalization of the G-CSF-R. COOH-terminal truncation mutants of G-CSF-R, found in severe congenital neutropenia, lack the internalization motifs and were completely defective in both spontaneous and ligand-induced internalization. As a result, these mutants showed constitutively high cell-surface expression.
引用
收藏
页码:571 / 579
页数:9
相关论文
共 56 条
[31]   Granulocyte colony-stimulating factor receptor mutations in severe congenital neutropenia transforming to acute myelogenous leukemia confer resistance to apoptosis and enhance cell survival [J].
Hunter, MG ;
Avalos, BR .
BLOOD, 2000, 95 (06) :2132-2137
[32]   Identification of ligand-binding site III on the immunoglobulin-like domain of the granulocyte colony-stimulating factor receptor [J].
Layton, JE ;
Hall, NE ;
Connell, F ;
Venhorst, J ;
Treutlein, HR .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (39) :36779-36787
[33]  
LIESCHKE GJ, 1994, BLOOD, V84, P1737
[34]   Increased granulocyte colony-stimulating factor responsiveness but normal resting granulopoiesis in mice carrying a targeted granulocyte colony-stimulating factor receptor mutation derived from a patient with severe congenital neutropenia [J].
McLemore, ML ;
Poursine-Laurent, J ;
Link, DC .
JOURNAL OF CLINICAL INVESTIGATION, 1998, 102 (03) :483-492
[35]   Characterization of a cis-Golgi matrix protein, GM130 [J].
Nakamura, N ;
Rabouille, C ;
Watson, R ;
Nilsson, T ;
Hui, N ;
Slusarewicz, P ;
Kreis, TE ;
Warren, G .
JOURNAL OF CELL BIOLOGY, 1995, 131 (06) :1715-1726
[36]   Tyrosine residues in the granulocyte colony-stimulating factor (G-CSF) receptor mediate G-CSF induced differentiation of murine myeloid leukemic (M1) cells [J].
Nicholson, SE ;
Starr, R ;
Novak, U ;
Hilton, DJ ;
Layton, JE .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (43) :26947-26953
[37]   DISTINCT REGIONS OF THE GRANULOCYTE-COLONY-STIMULATING FACTOR-RECEPTOR ARE REQUIRED FOR TYROSINE PHOSPHORYLATION OF THE SIGNALING MOLECULES JAK2, STAT3, AND P42, P44(MAPK) [J].
NICHOLSON, SE ;
NOVAK, U ;
ZIEGLER, SF ;
LAYTON, LE .
BLOOD, 1995, 86 (10) :3698-3704
[38]   TYROSINE KINASE JAK1 IS ASSOCIATED WITH THE GRANULOCYTE-COLONY-STIMULATING FACTOR-RECEPTOR AND BOTH BECOME TYROSINE-PHOSPHORYLATED AFTER RECEPTOR ACTIVATION [J].
NICHOLSON, SE ;
OATES, AC ;
HARPUR, AG ;
ZIEMIECKI, A ;
WILKS, AF ;
LAYTON, JE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (08) :2985-2988
[39]   Cluster of differentiation antigen 4 (CD4) endocytosis and adaptor complex binding require activation of the CD4 endocytosis signal by serine phosphorylation [J].
Pitcher, C ;
Höning, S ;
Fingerhut, A ;
Bowers, K ;
Marsh, M .
MOLECULAR BIOLOGY OF THE CELL, 1999, 10 (03) :677-691
[40]   Extraction of cholesterol with methyl-β-cyclodextrin perturbs formation of clathrin-coated endocytic vesicles [J].
Rodal, SK ;
Skretting, G ;
Garred, O ;
Vilhardt, F ;
van Deurs, B ;
Sandvig, K .
MOLECULAR BIOLOGY OF THE CELL, 1999, 10 (04) :961-974