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PMID: 9620849 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Targeted disruption of SHIP leads to hemopoietic perturbations, lung pathology, and a shortened life span.

Genes & development ·Vol. 12 ·No. 11 ·1998-06-01 ·Pages 1610-20

Helgason CD, Damen JE, Rosten P, Grewal R, Sorensen P, Chappel SM, Borowski A, Jirik F, Krystal G, Humphries RK

Abstract

SHIP is a 145-kD SH2-containing inositol-5-phosphatase widely expressed in hemopoietic cells. It was first identified as a tyrosine phosphoprotein associated with Shc in response to numerous cytokines. SHIP has been implicated in FcgammaRIIB receptor-mediated negative signaling in B cells and mast cells and is postulated to down-regulate cytokine signal transduction in myeloid cells. To define further its role in the proliferation and differentiation of hemopoietic progenitors, as well as its function in mature cells, we have generated embryonic stem cells and mice bearing a targeted disruption of both SHIP alleles. Here we show that although SHIP null mice are viable and fertile, they fail to thrive and survival is only 40% by 14 weeks of age. Mortality is associated with extensive consolidation of the lungs resulting from infiltration by myeloid cells. Increased numbers of granulocyte-macrophage progenitors are observed in both the bone marrow and spleen of SHIP-/- mice, perhaps as a consequence of hyper-responsiveness to stimulation by macrophage-colony stimulating factor, granulocyte-macrophage colony stimulating factor, interleukin-3, or Steel factor as observed in vitro. In contrast, numbers of bone marrow lymphoid and late erythroid progenitors (CFU-E) are reduced. Thus, homozygous disruption of SHIP establishes the crucial role of this molecule in modulating cytokine signaling within the hemopoietic system and provides a powerful model for further delineating its function.

MeSH Terms
Animals Gene Expression Regulation, Developmental Hematopoiesis/physiology Longevity/physiology Lung/pathology,physiopathology Mice Mice, Knockout/physiology Phosphatidylinositol-3,4,5-Trisphosphate 5-Phosphatases Phosphoric Monoester Hydrolases/physiology src Homology Domains
Chemicals
Phosphoric Monoester Hydrolases INPPL1 protein, human Phosphatidylinositol-3,4,5-Trisphosphate 5-Phosphatases
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Helgason C D
Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, British Columbia V5Z 1L3, Canada.
Damen J E
Rosten P
Grewal R
Sorensen P
Chappel S M
Borowski A
Jirik F
Krystal G
Humphries R K
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Article Info
Journal
Genes & development
Abbr.
Genes Dev
ISSN
0890-9369
Published
1998-06-01
Pages
1610-20
Language
English
Region
United States
NLM ID
8711660
PMCID
PMC316868
Subset
IM
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