Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: EC:2.7.7.48 (transcriptase)
9,479 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

The chromosomal translocation t(1;19)(q23;p13) and its variant form der(19)t(1;19) found in 3-5% of acute lymphoblastic leukemia (ALL) results in the expression of the E2A-PBX1 fusion transcript. Although strongly associated with a pre-B immunophenotype, we report the occurrence of t(1;19) in bone marrow or peripheral blood in nine patients with ALL with the following immunophenotypes: pre-B ALL (four), c-ALL (two), c-ALL clg not tested (one), null-ALL (one) and mature B-ALL (one). The E2A-PBX1 fusion transcript investigated by reverse-transcriptase polymerase chain reaction (RT-PCR) was seen in all patients at diagnosis and/or on follow-up samples. Six patients are alive in first clinical remission. Of these patients, three were PCR+ve from between 2 and 38 months from diagnosis, and three were PCR-ve when examined at 5, 26 and 51 months from diagnosis. Two patients are in second remission. One was PCR+ve at 18 months, suffered a CNS relapse at 21 months but was PCR-ve 1 month later. The other was PCR+ve in remission at 2 and 11 months from diagnosis and in testicular relapse at 31 months, but was PCR-ve 5 months later. The remaining patient died 2 months from diagnosis and was not investigated in remission. The prognostic significance of these findings remains to be investigated.
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PMID:Expression of the E2A-PBX1 fusion transcripts in t(1;19)(q23;p13) and der(19)t(1;19) at diagnosis and in remission of acute lymphoblastic leukemia with different B lineage immunophenotypes. 776 44

A 5-year-old boy who initially presented with ALL and relapsed 4 months later with AML was found to have an add(19) in the leukemia cells. FISH revealed that the add(19) was really a cryptic t(l2;l9)(p13.3;p13.3) interrupting E2A (TCF3). Nucleotide sequences of cloned genomic fragments with the E2A rearrangements revealed that the der(12) contained E2A joined to an intron of the NOLI (p120) gene. Reverse transcriptase (RT)-PCR of patient lymphoblast RNA showed expression of in-frame fusion cDNAs consisting of most of NOL1 fused to the 3' portion of E2A that encoded part of the second transcriptional activation domain and the DNA binding and protein dimerization motifs. The reciprocal der(19) E2A genomic rearrangements included 5' regions of E2A joined to an intron of the ZNF384 (NMP4, CIZ) gene, located approximately 450 kb centromeric to NOL1 on chromosome 12. RT-PCR showed expression of in-frame E2A-ZNF384 fusion cDNAs. To our knowledge, this is the second report of a chromosome translocation in leukemia resulting in two different gene fusions. This is the first report of expression of E2A fusion protein that includes the DNA binding and protein dimerization domains due to a more proximal break in E2A compared to those described previously.
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PMID:E2A-ZNF384 and NOL1-E2A fusion created by a cryptic t(12;19)(p13.3; p13.3) in acute leukemia. 1818 22

OBJECTIVE To develop an in vitro system for differentiation of equine B cells from bone marrow hematopoietic progenitor cells on the basis of protocols for other species. SAMPLE Bone marrow aspirates aseptically obtained from 12 research horses. PROCEDURES Equine bone marrow CD34+ cells were sorted by use of magnetic beads and cultured in medium supplemented with cytokines (recombinant human interleukin-7, equine interleukin-7, stem cell factor, and Fms-like tyrosine kinase-3), murine OP9 stromal cell preconditioned medium, and equine fetal bone marrow mesenchymal stromal cell preconditioned medium. Cells in culture were characterized by use of flow cytometry, immunocytofluorescence microscopy, and quantitative reverse-transcriptase PCR assay. RESULTS For these culture conditions, bone marrow-derived equine CD34+ cells differentiated into CD19+IgM+ B cells that expressed the signature transcription factors early B-cell factor and transcription factor 3. These conditions also supported the concomitant development of autologous stromal cells, and their presence was supportive of B-cell development. CONCLUSIONS AND CLINICAL RELEVANCE Equine B cells were generated from bone marrow aspirates by use of supportive culture conditions. In vitro generation of equine autologous B cells should be of use in studies on regulation of cell differentiation and therapeutic transplantation.
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PMID:Effects of autologous stromal cells and cytokines on differentiation of equine bone marrow-derived progenitor cells. 2894 21