Src homology 2 domain-containing inositol 5-phosphatase 1 mediates cell cycle arrest by FcgammaRIIB
O Malbec1, C Schmitt, P Bruhns
1Laboratoire d'Immunologie Cellulaire et Clinique, INSERM U.255, Institut Curie, 75005 Paris, France.
Abstract:
We previously found that low affinity receptors for the Fc portion of IgG, FcgammaRIIB, which are widely expressed by hematopoietic cells, can negatively regulate receptor tyrosine kinase-dependent cell proliferation. We investigated here the mechanisms of this inhibition. We used as experimental models wild-type mast cells, which constitutively express the stem cell factor receptor Kit and FcgammaRIIB, FcgammaRIIB-deficient mast cells reconstituted with wild-type or mutated FcgammaRIIB, and Src homology 2 domain-containing inositol polyphosphate 5-phosphatase 1 (SHIP1)-deficient mast cells. We found that, upon coaggregation with Kit, FcgammaRIIB are tyrosyl-phosphorylated, recruit SHIP1, but not SHIP2, SH2 domain-containing protein tyrosine phosphatase-1 or -2, abrogate Akt phosphorylation, shorten the duration of the activation of mitogen-activated protein kinases of the Ras and Rac pathways, abrogate cyclin induction, prevent cells from entering the cell cycle, and block thymidine incorporation. FcgammaRIIB-mediated inhibition of Kit-dependent cell proliferation was reduced in SHIP1-deficient mast cells, whereas inhibition of IgE-induced responses was abrogated. Cell proliferation was, however, inhibited by coaggregating Kit with FcgammaRIIB whose intracytoplasmic domain was replaced with the catalytic domain of SHIP1. These results demonstrate that FcgammaRIIB use SHIP1 to inhibit pathways shared by receptor tyrosine kinases and immunoreceptors to trigger cell proliferation and cell activation, respectively, but that, in the absence of SHIP1, FcgammaRIIB can use other effectors that specifically inhibit cell proliferation.
Insights
Low affinity FcgammaRIIB receptors inhibit cell proliferation by recruiting SHIP1. This mechanism blocks key signaling pathways, but FcgammaRIIB can use other effectors when SHIP1 is absent.
Area of Science:
- Immunology
- Cell Biology
- Signal Transduction
Background:
- FcgammaRIIB receptors are widely expressed by hematopoietic cells.
- FcgammaRIIB negatively regulate receptor tyrosine kinase-dependent cell proliferation.
- Investigating the mechanisms of FcgammaRIIB-mediated inhibition is crucial for understanding immune regulation.
Purpose of the Study:
- To elucidate the molecular mechanisms by which FcgammaRIIB inhibits receptor tyrosine kinase (RTK)-dependent cell proliferation.
- To identify the key signaling molecules involved in FcgammaRIIB-mediated negative regulation.
- To differentiate the roles of FcgammaRIIB in RTK signaling versus immunoreceptor signaling.
Main Methods:
- Utilized wild-type and FcgammaRIIB-deficient mast cells.
- Employed mast cells reconstituted with wild-type or mutated FcgammaRIIB.
- Used Src homology 2 domain-containing inositol polyphosphate 5-phosphatase 1 (SHIP1)-deficient mast cells as experimental models.
Main Results:
- FcgammaRIIB recruits SHIP1, not SHIP2 or SHP1/2, upon coaggregation with Kit.
- FcgammaRIIB abrogates Akt phosphorylation and shortens MAPK pathway activation.
- FcgammaRIIB prevents cell cycle entry and blocks proliferation, with SHIP1 being essential for this effect on Kit-dependent proliferation.
Conclusions:
- FcgammaRIIB utilizes SHIP1 to inhibit shared pathways of RTKs and immunoreceptors for cell proliferation and activation.
- In SHIP1-deficient cells, FcgammaRIIB employs alternative effectors to specifically inhibit cell proliferation.
- These findings highlight the critical role of SHIP1 in FcgammaRIIB-mediated negative regulation of cell proliferation.
Related Concept Videos
Negative Regulator Molecules
The Cell Cycle Control System
Inhibition of Cdk Activity
The Cell Cycle Control System
Inhibition of CDK Activity
The Cell Cycle Control System
Cyclins and cyclin-dependent kinases (Cdks) are the primary cell cycle regulators and function at the cell...


