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HS1 interacts with Lyn and is critical for erythropoietin-induced differentiation of erythroid cells
Journal article   Open access   Peer reviewed

HS1 interacts with Lyn and is critical for erythropoietin-induced differentiation of erythroid cells

E. Ingley, M.K. Sarna, J.G. Beaumont, P.A. Tilbrook, S. Tsai, Y. Takemoto, J.H. Williams and S.P. Klinken
Journal of Biological Chemistry, Vol.275(11), pp.7887-7893
2000
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Abstract

Erythroid cells terminally differentiate in response to erythropoietin binding its cognate receptor. Previously we have shown that the tyrosine kinase Lyn associates with the erythropoietin receptor and is essential for hemoglobin synthesis in three erythroleukemic cell lines. To understand Lyn signaling events in erythroid cells, the yeast two-hybrid system was used to analyze interactions with other proteins. Here we show that the hemopoietic- specific protein HS1 interacted directly with the SH3 domain of Lyn, via its proline-rich region. A truncated HS1, bearing the Lyn-binding domain, was introduced into J2E erythroleukemic cells to determine the impact upon responsiveness to erythropoietin. Truncated HS1 had a striking effect on the phenotype of the J2E line - the cells were smaller, more basophilic than the parental proerythoblastoid cells and had fewer surface erythropoietin receptors. Moreover, basal and erythropoietin-induced proliferation and differentiation were markedly suppressed. The inability of cells containing the truncated HS1 to differentiate may be a consequence of markedly reduced levels of Lyn and GATA-1. In addition, erythropoietin stimulation of these cells resulted in rapid, endosome-mediated degradation of endogenous HS1. The truncated HS1 also suppressed the development of erythroid colonies from fetal liver cells. These data show that disrupting HS1 has profoundly influenced the ability of erythroid cells to terminally differentiate.

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Citation topics
1 Clinical & Life Sciences
1.184 Physiology & Metals
1.184.1030 Erythropoietin Therapy
Web Of Science research areas
Biochemistry & Molecular Biology
ESI research areas
Biology & Biochemistry
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