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1.
Br J Haematol ; 114(3): 632-4, 2001 Sep.
Article in English | MEDLINE | ID: mdl-11552989

ABSTRACT

Over-expression of the c-myb gene and expression of activated forms of myb are known to transform haemopoietic cells, particularly cells of the myeloid lineage. Truncations or mutations that disrupt the negative regulatory domain (NRD) of the Myb protein confer an increased ability to transform cells. Although it has proved difficult to link mutations in c-MYB to human leukaemia, no studies investigating the presence of mutations within the c-MYB NRD have been reported. Therefore, we have performed mutational analysis of this region, using polymerase chain reaction-single-stranded conformation polymorphism and sequence analysis, in 26 patients with acute or chronic myeloid leukaemia. No mutations were detected, indicating that mutation of this region of the Myb protein is not common in the pathogenesis or progression of these diseases.


Subject(s)
Genes, myb , Leukemia, Myeloid/genetics , Polymorphism, Genetic , Terminal Repeat Sequences , Acute Disease , Humans , Leukemia, Myelogenous, Chronic, BCR-ABL Positive/genetics , Mutagenesis, Site-Directed , Polymorphism, Single-Stranded Conformational
2.
Blood Cells Mol Dis ; 27(2): 409-15, 2001.
Article in English | MEDLINE | ID: mdl-11259163

ABSTRACT

While a considerable number of candidate Myb target genes have been reported to date, most of these are likely to play little or no role in transformation by myb oncogenes. Here we have used a conditionally myb-transformed myeloid cell line (ERMYB) to further examine Myb regulation of one candidate target gene--c-myc--that has the potential to affect cell proliferation. It was found that the major influence on c-myc expression was the presence of cytokine (GM-CSF) rather than Myb activity. We also describe the application of PCR-based subtractive hybridization and low-density cDNA array screening, in conjunction with the ERMYB line, to the identification of additional Myb target genes. Preliminary identification of a number of candidates is reported; these include myeloperoxidase, which is known to have essential Myb-binding sites in its regulatory region.


Subject(s)
Cell Transformation, Neoplastic/genetics , Genes, myb , Cell Line, Transformed , Gene Expression Regulation, Neoplastic , Gene Targeting , Genes, myc , Humans
3.
Mol Cell Biol ; 18(2): 989-1002, 1998 Feb.
Article in English | MEDLINE | ID: mdl-9447996

ABSTRACT

We have previously detected two related murine nuclear proteins, p160 and p67, that can bind to the leucine zipper motif within the negative regulatory domain of the Myb transcription factor. We now describe the molecular cloning of cDNA corresponding to murine p160. The P160 gene is located on mouse chromosome 11, and related sequences are found on chromosomes 1 and 12. The predicted p160 protein is novel, and in agreement with previous studies, we find that the corresponding 4.5-kb mRNA is ubiquitously expressed. We showed that p67 is an N-terminal fragment of p160 which is generated by proteolytic cleavage in certain cell types. The protein encoded by the cloned p160 cDNA and an engineered protein (p67*) comprising the amino-terminal region of p160 exhibit binding specificities for the Myb and Jun leucine zipper regions identical to those of endogenous p160 and p67, respectively. This implies that the Myb-binding site of p160 lies within the N-terminal 580 residues and that the Jun-binding site is C-terminal to this position. Moreover, we show that p67* but not p160 can inhibit transactivation by Myb. Unexpectedly, immunofluorescence studies show that p160 is localized predominantly in the nucleolus. The implications of these results for possible functions of p160 are discussed.


Subject(s)
Carrier Proteins/genetics , DNA-Binding Proteins/metabolism , Nuclear Proteins/genetics , Protein-Tyrosine Kinases/metabolism , Proto-Oncogene Proteins/metabolism , Trans-Activators/metabolism , Transcriptional Activation , 3T3 Cells , Amino Acid Sequence , Animals , Base Sequence , Carrier Proteins/metabolism , Chromosome Mapping , Cloning, Molecular , DNA, Complementary/isolation & purification , Mice , Molecular Sequence Data , Nuclear Proteins/metabolism , Proto-Oncogene Proteins c-myb , RNA, Messenger/metabolism , RNA-Binding Proteins , Transcription Factors
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