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PMID: 12384440 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

The Src homology 2 domain-containing inositol 5-phosphatase negatively regulates Fcgamma receptor-mediated phagocytosis through immunoreceptor tyrosine-based activation motif-bearing phagocytic receptors.

Blood ·Vol. 100 ·No. 9 ·2002-11-01 ·Pages 3374-82

Nakamura K, Malykhin A, Coggeshall KM

Abstract

Molecular mechanisms by which the Src homology 2 domain-containing inositol 5-phosphatase (SHIP) negatively regulates phagocytosis in macrophages are unclear. We addressed the issue using bone marrow-derived macrophages from FcgammaR- or SHIP-deficient mice. Phagocytic activities of macrophages from FcgammaRII(b)(-/-) and SHIP(-/-) mice were enhanced to a similar extent, relative to those from wild type. However, calcium influx was only marginally affected in FcgammaRII(b)(-/-), but greatly enhanced in SHIP(-/-) macrophages. Furthermore, SHIP was phosphorylated on tyrosine residues upon FcgammaR aggregation even in macrophages from FcgammaRII(b)(-/-) mice or upon clustering of a chimeric receptor containing CD8 and the immunoreceptor tyrosine-based activation motif (ITAM)-bearing gamma-chain or human-restricted FcgammaRIIa. These findings indicate that, unlike B cells, SHIP is efficiently phosphorylated in the absence of an immunoreceptor tyrosine-based inhibition motif (ITIM)-bearing receptor. We further demonstrate that SHIP directly bound to phosphorylated peptides derived from FcgammaRIIa with a high affinity, comparable to that of FcgammaRII(b). Lastly, FcgammaRIIa-mediated phagocytosis was significantly enhanced in THP-1 cells overexpressing dominant-negative form of SHIP in the absence of FcgammaRII(b). These results indicate that SHIP negatively regulates FcgammaR-mediated phagocytosis through all ITAM-containing IgG receptors using a molecular mechanism distinct from that in B cells.

MeSH Terms
Amino Acid Motifs Animals Antigens, CD/chemistry,metabolism Bone Marrow Cells/cytology CD8 Antigens/genetics,physiology Calcium Signaling GPI-Linked Proteins Humans Macrophages/physiology Mice Mice, Inbred C57BL Mice, Knockout Phagocytosis/physiology Phosphatidylinositol-3,4,5-Trisphosphate 5-Phosphatases Phosphoric Monoester Hydrolases/chemistry,deficiency,genetics,physiology Phosphorylation Phosphotyrosine/physiology Protein Processing, Post-Translational Receptors, IgG/chemistry,deficiency,metabolism Recombinant Fusion Proteins/metabolism
Chemicals
Antigens, CD CD8 Antigens FCGR3B protein, human Fc gamma receptor IIA GPI-Linked Proteins Receptors, IgG Recombinant Fusion Proteins Phosphotyrosine Phosphoric Monoester Hydrolases INPPL1 protein, human Phosphatidylinositol-3,4,5-Trisphosphate 5-Phosphatases
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Nakamura Koji
Program in Immunobiology and Cancer, The Oklahoma Medical Research Foundation, 825 NE 13th Street, Oklahoma City, OK 73104, USA.
Malykhin Alexander
Coggeshall K Mark
Article Info
Journal
Blood
Abbr.
Blood
ISSN
0006-4971
Published
2002-11-01
Pages
3374-82
Language
English
Region
United States
NLM ID
7603509
Subset
IM
Grants
NIAID NIH HHS · AI 41447 · United States
NCI NIH HHS · CA 64268 · United States
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