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R Arlinghaus

Publications and source records attributed to R Arlinghaus.

17 recordsLinked to original sources

p160 Bcr mediates platelet-derived growth factor activation of extracellular signal-regulated kinase in vascular smooth muscle cells.

BACKGROUND: The human Bcr gene was originally identified by its presence in the chimeric Bcr/Abl oncogene, which is causative for chronic myeloblastic leukemia. Because Bcr encodes a serine/threonine protein kinase, we studied its kinase activity and determined the role of Bcr in the PDGF signaling pathway to ERK1/2 activation and DNA synthesis in rat aortic smooth muscle cells (RASMCs). METHODS AND RESULTS: In RASMCs, platelet-derived growth factor-BB (PDGF) stimulated Bcr kinase activity, with a maximum at 1 minute. Because phosphatidylinositol 3'-kinase (PI3-K) is essential for Bcr/Abl leukemogenesis, we evaluated the role of mouse PDGF-beta-receptor binding sites for PI3-K (Y708, Y719) and for phospholipase C-gamma (Y977, Y989) in PDGF-mediated Bcr kinase activation. The mutant PDGF receptor Y708F/Y719F but not Y977F/Y989F showed significantly reduced Bcr kinase activity. To determine the role of Bcr in PDGF-mediated signal transduction events leading to ERK1/2 and its downstream Elk1 transcription activation, wild-type (WT) and kinase-negative (KN) Bcr were transiently expressed in RASMCs. Bcr WT enhanced, whereas Bcr KN inhibited, PDGF-stimulated ERK1/2 and Elk1 transcriptional activity. Overexpression of Bcr also enhanced PDGF-induced Ras/Raf-1 activity and DNA synthesis, but this regulation is independent of the kinase activity of Bcr. Finally, we found that Bcr expression was increased in the neointimal layer after balloon injury of rat carotid artery. CONCLUSIONS: These results demonstrated the importance of Bcr in PDGF-mediated events, such as activation of Ras, Raf-1, ERK1/2, and Elk1, and stimulation of DNA synthesis.

Animals↗

Bcr in vascular smooth muscle cells involvement of Ras and Raf-1 activation by Bcr.

Bcr gene was originally identified by its presence in the chimeric Bcr/Abl oncogene. In vascular smooth muscle cells, platelet-derived growth factor-BB (PDGF) stimulated Bcr kinase activity. The mutant PDGF receptor for PI3-K, but not for PLC-gamma binding sites, showed significantly reduced Bcr kinase activity. Bcr wild-type enhanced, whereas Bcr kinase negative form inhibited PDGF-stimulated ERK1/2 activity. A dominant negative Ras did not inhibit Bcr kinase activation, and overexpression of Bcr increased Ras/Raf-1 activity and DNA synthesis. These results demonstrated the importance of Bcr in PDGF-mediated events such as activation of Ras, Raf-1, and ERK1/2 and stimulation of DNA synthesis.

Animals↗

Radiation-induced assembly of Rad51 and Rad52 recombination complex requires ATM and c-Abl.

Cells from individuals with the recessive cancer-prone disorder ataxia telangiectasia (A-T) are hypersensitive to ionizing radiation (I-R). ATM (mutated in A-T) is a protein kinase whose activity is stimulated by I-R. c-Abl, a nonreceptor tyrosine kinase, interacts with ATM and is activated by ATM following I-R. Rad51 is a homologue of bacterial RecA protein required for DNA recombination and repair. Here we demonstrate that there is an I-R-induced Rad51 tyrosine phosphorylation, and this induction is dependent on both ATM and c-Abl. ATM, c-Abl, and Rad51 can be co-immunoprecipitated from cell extracts. Consistent with the physical interaction, c-Abl phosphorylates Rad51 in vitro and in vivo. In assays using purified components, phosphorylation of Rad51 by c-Abl enhances complex formation between Rad51 and Rad52, which cooperates with Rad51 in recombination and repair. After I-R, an increase in association between Rad51 and Rad52 occurs in wild-type cells but not in cells with mutations that compromise ATM or c-Abl. Our data suggest signaling mediated through ATM, and c-Abl is required for the correct post-translational modification of Rad51, which is critical for the assembly of Rad51 repair protein complex following I-R.

Ataxia Telangiectasia Mutated Proteins↗

The presence of the Rb c-box peptide in the cytoplasm inhibits p210bcr-abl transforming function.

In order to test if the carboxyl terminal polypeptide of the Retinoblastoma (Rb) tumor suppressor protein, could be used to suppress the growth factor-independent growth phenotype of p210bcr-abl positive myeloid cells, we introduced a truncated form of the 3' end of the Rb cDNA encoding its last 173 amino acid residues (Rb C-box) which localize into the cytoplasm where the p210bcr-abl transforming protein is found, into myeloid cells (32D) which depends on the p210bcr-abl protein for IL3 growth factor-independent growth (32D-p210). The expression of the plasmid vectors carrying the Rb C-box cDNAs was shown to inhibit the abl tyrosine specific protein kinase activity of the p210(bcr-abl) oncoprotein and to suppress the IL3-independent growth phenotype of the 32D-p210 cells. The Rb C-box polypeptides did not suppress the growth of the untransfected 32D parental cell line in methylcellulose in the presence of IL3-conditioned medium. These results suggest that the cytoplasmic localization of the p210(bcr-abl) allows it to escape the effect of intranuclear proteins such as Rb which negatively regulate the p145(c-abl) kinase.

Animals↗

Analysis of Philadelphia chromosome-negative BCR-ABL-positive chronic myelogenous leukemia by hypermetaphase fluorescence in situ hybridization.

BACKGROUND: In 5%-10% of patients with of chronic myelogenous leukemia (CML), the Philadelphia chromosome (Ph) is not identified, despite the presence of the associated BCR-ABL molecular abnormality (Ph-negative, BCR-ABL-positive CML) because of sub-microscopic rearrangements. PATIENTS AND METHODS: Six patients with Ph-negative, BCR-ABL-positive CML were investigated. The Ph chromosome detection via fluorescence in situ hybridization after 24-hour mitotic arrest of bone marrow cultures resulting in several hundreds of metaphases (hypermetaphase FISH or HMF) was useful in explaining the nature of the six cases. RESULTS: Four patients had a low frequency of Ph-positive cells by HMF (5.7%, 4.8%, 3.9%, 0.2%), i.e., a typical Ph translocation. However, two cases involved a 9q34 inserted into chromosome 22q11 (74.2% and 92%), without a deletion from chromosome 22 and reciprocal translocation onto 9, i.e., not a typical Ph translocation. The pattern of UBCR gene rearrangement was characterized by the same genomic recombination of 5-BCR and c-ABL, both in the four cases of typical translocation (9;22) and in the two cases of insertion of 9q34 into chromosome 22q11. CONCLUSIONS: The HMF identified two different bases for Ph-negative, BCR-ABL-positive cells in CML-presence of low frequency of cells with typical Ph translocations or presence of cells with ABL insertions into the BCR gene on chromosome 22.

Adult↗

Chronic myelogenous leukaemia with p185(BCR/ABL) expression: characteristics and clinical significance.

We investigated the significance of p185BCR/ABL expression in patients with chronic myelogenous leukaemia (CML) in relation to disease features, therapy and outcome. Results of Western blot analysis for 1384 patients referred with a diagnosis of CML to our institution from 1989 to 1997 were reviewed. Clinical characteristics, results of cytogenetic analysis and RT-PCR for BCR rearrangement were analysed. Five patients with Ph-positive CML expressing the p185BCR/ABL hybrid protein were identified. By RT-PCR, bone marrow specimens of these patients were confirmed to have an e1a2 junction. The median age at diagnosis of these patients was 55 years (range 43-76). All had elevated white cell counts at diagnosis (median 50 x 109/l, range 11.7-163 x 109/l). Four patients had monocytosis (range 10-16%) with a low neutrophil/monocyte ratio in the peripheral blood (range 3.4-5.7). Patients presented with various stages of the disease (two in chronic-phase CP, two in accelerated-phase AP, and one in blastic-phase BP). The clinical course and therapy of the patients varied, with one patient receiving hydroxyurea only, three patients receiving hydroxyurea followed by interferon-alpha based regimens and bone marrow transplantation. The patient presenting in BP was treated with combination chemotherapy. The clinical outcome of the patients was also varied with one patient alive and in complete remission (with complete cytogenetic remission after transplant) and four patients dead after progression to more advanced stages. We conclude that patients with Ph-positive p185BCR/ABL CML frequently present with monocytosis and a low neutrophil/monocyte ratio in the peripheral blood, aiding the speculation that the presence of the p185BCR/ABL hybrid protein may contribute to a phenotype intermediate between CML and CMML. Of interest, the only other specific clinical feature identified was the absence of splenomegaly in four of five patients. There was no definite association with transformation to lymphoid blast phase.

Adult↗

Peptide containing the BCR oligomerization domain (AA 1-160) reverses the transformed phenotype of p210bcr-abl positive 32D myeloid leukemia cells.

We first showed that the introduction of a bcr-abl transcription unit into the 32D murine myeloid cell line (P210bcrabl32D) converts this cell line from an IL3 dependent cell line to an IL3 growth independent cell line. We next cloned a fragment of the bcr-abl cDNA, which codes for the bcr oligomerization domain and neighboring regions. To test for a transformation inhibitory effect of this oligomerization inhibitory peptide transcription unit on the p210bcr-abl mediated IL3 independent growth of the P210bcrabl32D cell line, we transiently co-electroporated into the growth factor dependent 32D cells, mixtures of plasmids which contained varying ratios of the plasmid expression vectors for the bcr oligomerization inhibitory peptide along with a smaller amount of the plasmid expression vector for the full length p210bcr-abl. (The P210bcr-abl protein converts the 32D from a growth factor dependent into a growth factor independent cell line.) We then showed that the oligomerization domain containing fragment from the bcr and bcr-abl proteins, can be used to inhibit the IL3 independent growth of p210bcr-abl positive 32D cells. These studies may be of eventual interest for those investigators whose goal is to design molecular therapeutic approaches to CML based on the use of peptidomimetic chemical functionalities, which mimic the structure and the inhibitory binding properties of the oligomerization domain containing fragment so as to inhibit the transforming function of the P210bcr-abl oncoprotein.

Animals↗

Inhibition of Grb2 and Crkl proteins results in growth inhibition of Philadelphia chromosome positive leukemic cells.

The Bcr-Abl oncoprotein is necessary for the growth of Philadelphia chromosome positive (Ph+) leukemic cells. The Bcr-Abl protein has been found to bind to SH2/SH3-containing adaptor proteins such as Grb2 and Crkl, and these complexes are believed to activate various signaling pathways. Grb2 and Crkl are important for the Bcr-Abl-mediated transformation of rat fibroblasts and murine hematopoietic cells. We have used liposomes to deliver nuclease-resistant antisense oligonucleotides (oligos) that are specific for the GRB2 or CRKL mRNA to leukemic cells to specifically downregulate Grb2 or Crkl protein expression. We found that by downregulating Grb2 or Crkl protein expression, Grb2 or Crkl antisense oligos could selectively inhibit the growth of Bcr-Abl positive cells, but not that of Bcr-Abl negative cells. Our data, together with other investigators' data, strongly indicate that Grb2 and Crkl are vital for the maintenance of cell growth in Ph+ leukemias.

Adaptor Proteins, Signal Transducing↗

Usefulness of detection of minimal residual disease by 'hypermetaphase' fluorescent in situ hybridization after allogeneic BMT for chronic myelogenous leukemia.

Hypermetaphase FISH (HMF), a molecular cytogenetic procedure combining the long term mitotic arrest of bone marrow cultures with detection of a specific chromosomal rearrangement by fluorescence in situ hybridization (FISH), has recently been shown to be effective in determining the frequency of Philadelphia chromosome positive (Ph+) cells in the bone marrow of chronic myelogenous leukemia (CML) patients undergoing treatment. By combining the probe for the Ph chromosome with one for the detection of the X chromosome, we used HMF to monitor the presence of malignant cells within the emerging host cell population in the marrow of a CML patient that had undergone sex-mismatched allogeneic bone marrow transplantation. In successive studies, we detected 0.5% and 1.75% Ph+ cells, respectively, confirmed by Western blot analysis for p210 protein. These readings occurred concordantly with a repopulation of host-derived diploid female cells. Standard G-band cytogenetic analyses did not detect any Ph+ cells at these time points. Intervention with donor lymphocyte infusion reinduced complete remission. This experience indicates that HMF is useful to identify low levels of repopulation by Ph+ cells in the marrow post-BMT at a stage when intervention is most efficacious.

ABO Blood-Group System↗

Analysis of the BCR-ABL protein in Philadelphia chromosome-positive adult acute lymphocytic leukemia.

Philadelphia chromosome (Ph)-positive acute lymphocytic leukemia (ALL) constitutes 15-35% of all ALL in adults. Its detection is prognostically significant. The Ph abnormality is usually detected through standard cytogenetic analysis but 20-30% of patients have insufficient metaphases (IM) with such analysis. To detect the BCR-ABL oncoprotein in peripheral blood specimen of patients with ALL at the time of diagnosis and at follow-up, a new sensitive technique of enhanced chemiluminescence Western blot (ECL-WB) analysis was investigated. Among 41 patients with newly diagnosed ALL, nine were Ph positive by cytogenetic studies; they were also BCR-ABL positive according to ECL-WB. Eight had p190 disease, and one had p210 disease. Among the 16 patients with IM, none demonstrated the oncoprotein through ECL-WB or through simultaneous Southern blot (SB) for p210 rearrangement. Follow-up studies were available for seven patients: four had detectable protein and three of them relapsed 4-20 weeks later; three had undetectable protein and one of them (who had low level protein at the time of diagnosis) relapsed 11 weeks later. Although none of the patients with IM at diagnosis had detectable protein according to ECL-WB, this was probably due to the small number of patients studied. One patient with IM studied at follow-up demonstrated the protein by ECL-WB. In summary, we describe a technique that is useful in the detection of p190/p210 ALL at diagnosis. It is less time consuming, and more cost effective than standard chromosome banding techniques. It may also detect the oncoprotein in cases with IM. Although a larger number of patients should be studied to prove its clinical usefulness, this technique may also be of value for monitoring residual disease at follow-up.

Blotting, Western↗

Bcr-Abl oncoproteins bind directly to activators of the Ras signalling pathway.

The cytosolic 185 and 210 kDa Bcr-Abl protein tyrosine kinases play important roles in the development of Philadelphia chromosome positive (Ph+) chronic myelogenous leukemia (CML) and acute lymphoblastic leukemia (Ph+ ALL). p185 and p210 Bcr-Abl contain identical abl-encoded sequences juxtaposed to a variable number of bcr-derived amino acids. As the mitogenic and transforming activities of tyrosine kinases involve stimulation of the Ras pathway, we analyzed Bcr-Abl oncoproteins for interactions with cytoplasmic proteins that mediate Ras activation. Such polypeptides include Grb2, which comprises a single Src homology 2 (SH2) domain flanked by two SH3 domains, and the 66, 52 and 46 kDa Shc proteins which possess an SH2 domain in their carboxy-terminus. Grb2 associates with tyrosine phosphorylated proteins through its SH2 domain, and with the Ras guanine nucleotide releasing protein mSos1 through its SH3 domains. mSos1 stimulates conversion of the inactive GDP-bound form of Ras to the active GTP-bound state. In bcr-abl-transformed cells, Grb2 and mSos1 formed a physical complex with Bcr-Abl. In vitro, the Grb2 SH2 domain bound Bcr-Abl through recognition of a tyrosine phosphorylation site within the amino-terminal bcr-encoded sequence (p.Tyr177-Val-Asn-Val), that is common to both Bcr-Abl proteins. These results suggest that autophosphorylation within the Bcr element of Bcr-Abl creates a direct physical link to Grb2-mSos1, and potentially to the Ras pathway, and thereby modifies the target specificity of the Abl tyrosine kinase.(ABSTRACT TRUNCATED AT 250 WORDS)

Adaptor Proteins, Signal Transducing↗

Tyrosine phosphorylation of P160 BCR by P210 BCR-ABL.

It is well established that the chimeric BCR-ABL gene formed by joining parts of the BCR and ABL genes plays a key role in the pathogenesis of Philadelphia (Ph) chromosome-positive leukemias. We report that simultaneous expression of P210 BCR-ABL and P160 BCR in simian COS-1 cells yielded stable complexes of these two proteins, and induced phosphorylation of P160 BCR on tyrosine residues in vivo. Tyrosine phosphorylation of a deletion mutant encoding 553 amino acids of BCR N-terminal sequences was also detected when it was coexpressed with P210 BCR-ABL. We propose that tyrosine phosphorylation of P160 BCR by P210 BCR-ABL and their stable physical interaction may perturb normal BCR functions and that these alterations are directly involved in the pathologic processes found in Ph chromosome-associated leukemias.

Amino Acid Sequence↗

The human cellular abl gene product in the chronic myelogenous leukemia cell line K562 has an associated tyrosine protein kinase activity.

Three antisera against the mouse v-abl gene product were used to identify two potential human c-abl gene products in the chronic myelogenous leukemia cell line K562. Two antipeptide sera were generated in rabbits using the predicted amino acid sequence of the mouse v-abl gene product. One antiserum was made against a polypeptide overlapping the in vivo tyrosine phosphorylation site of murine P120gag-abl and what is believed to be a homologous tyrosine phosphorylation site of the predicted normal human c-abl gene product (v-abl 263-280). The second antipeptide serum, abl 389-403, was generated against a predicted hydrophilic peptide of the v-abl gene product. Immunoprecipitation from K562 cells metabolically labeled with [32P]orthophosphate by a mouse tumor regressor and abl 389-403 antipeptide sera detected two proteins of 190,000 and 240,000 Da. Both proteins were labeled primarily at serine and, to a much lesser extent, at tyrosine residues. Immune complex kinase assays using conditions that allow the tyrosine phosphorylation of P120gag-abl showed that in vitro phosphorylation of P190 and P240 occurs primarily at tyrosine residues. The detection of these enzymatically active human c-abl gene products is a rare observation which may be in part attributed to the c-abl gene translocation from chromosomes 9 to 22 occurring in the vast majority of chronic myelogenous leukemia patients.

Abelson murine leukemia virus↗