Protein tyrosine phosphatase containing SH2 domains: characterization, preferential expression in hematopoietic cells, and localization to human chromosome 12p12-p13.
Open Access
- 1 February 1992
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 12 (2), 836-846
- https://doi.org/10.1128/mcb.12.2.836
Abstract
Protein tyrosine phosphorylation has been implicated in the growth and functional responses of hematopoietic cells. Recently, approaches have been developed to characterize the protein tyrosine phosphatases that may contribute to regulation of protein tyrosine phosphorylation. One novel protein tyrosine phosphatase was expressed predominantly in hematopoietic cells. Hematopoietic cell phosphatase encodes a 68-kDa protein that contains a single phosphatase conserved domain. Unlike other known protein tyrosine phosphatases, hematopoietic cell phosphatase contains two src homology 2 domains. We also cloned the human homolog, which has 95% amino acid sequence identity. Both the murine and human gene products have tyrosine-specific phosphatase activity, and both are expressed predominantly in hematopoietic cells. Importantly, the human gene maps to chromosome 12 region p12-p13. This region is associated with rearrangements in approximately 10% of cases of acute lymphocytic leukemia in children.Keywords
This publication has 83 references indexed in Scilit:
- Cloning of PI3 kinase-associated p85 utilizing a novel method for expression/cloning of target proteins for receptor tyrosine kinasesCell, 1991
- cDNA cloning of a Novel 85 kd protein that has SH2 domains and regulates binding of PI3-kinase to the PDGF β-receptorCell, 1991
- Novel putative protein tyrosine phosphatases identified by the polymerase chain reactionFEBS Letters, 1990
- The colony stimulating factor-1 receptor associates with and activates phosphatidylinositol-3 kinaseNature, 1989
- Single-step purification of polypeptides expressed in Escherichia coli as fusions with glutathione S-transferaseGene, 1988
- Vanadate can replace interleukin 3 for transient growth of factor-dependent cellsExperimental Cell Research, 1987
- Use of bacteriophage T7 RNA polymerase to direct selective high-level expression of cloned genesJournal of Molecular Biology, 1986
- Neoplastic transformation of mast cells by Abelson-MuLV: abrogation of IL-3 dependence by a nonautocrine mechanismCell, 1985
- Malignant transformation of a growth factor-dependent myeloid cell line by Abelson virus without evidence of an autocrine mechanismCell, 1985
- Structure and sequence of the cellular gene homologous to the RSV src gene and the mechanism for generating the transforming virusCell, 1983