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Rapid and reliable detection of N-ras mutations in acute lymphoblastic leukemia by melting curve analysis using LightCycler technology
by
Seriu, T
, Nakao, M
, Bartram, CR
, Janssen, JWG
in
Acute lymphoblastic leukemia
/ Biological and medical sciences
/ Child
/ Children
/ Codon
/ Codons
/ DNA probes
/ DNA, Neoplasm - analysis
/ DNA, Neoplasm - chemistry
/ Genes
/ Genes, ras - genetics
/ Hematologic and hematopoietic diseases
/ Humans
/ Hybridization
/ Immunophenotyping
/ Incidence
/ Leukemia
/ Leukemias. Malignant lymphomas. Malignant reticulosis. Myelofibrosis
/ Lymphatic leukemia
/ Lymphocytes T
/ Medical sciences
/ Melting
/ Melting curve
/ Mutation
/ Mutation hot spots
/ N-ras gene
/ Nucleotides
/ Point Mutation
/ Polymerase Chain Reaction - methods
/ Precursor Cell Lymphoblastic Leukemia-Lymphoma - genetics
/ Ras protein
/ Technology
2000
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Rapid and reliable detection of N-ras mutations in acute lymphoblastic leukemia by melting curve analysis using LightCycler technology
by
Seriu, T
, Nakao, M
, Bartram, CR
, Janssen, JWG
in
Acute lymphoblastic leukemia
/ Biological and medical sciences
/ Child
/ Children
/ Codon
/ Codons
/ DNA probes
/ DNA, Neoplasm - analysis
/ DNA, Neoplasm - chemistry
/ Genes
/ Genes, ras - genetics
/ Hematologic and hematopoietic diseases
/ Humans
/ Hybridization
/ Immunophenotyping
/ Incidence
/ Leukemia
/ Leukemias. Malignant lymphomas. Malignant reticulosis. Myelofibrosis
/ Lymphatic leukemia
/ Lymphocytes T
/ Medical sciences
/ Melting
/ Melting curve
/ Mutation
/ Mutation hot spots
/ N-ras gene
/ Nucleotides
/ Point Mutation
/ Polymerase Chain Reaction - methods
/ Precursor Cell Lymphoblastic Leukemia-Lymphoma - genetics
/ Ras protein
/ Technology
2000
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Rapid and reliable detection of N-ras mutations in acute lymphoblastic leukemia by melting curve analysis using LightCycler technology
by
Seriu, T
, Nakao, M
, Bartram, CR
, Janssen, JWG
in
Acute lymphoblastic leukemia
/ Biological and medical sciences
/ Child
/ Children
/ Codon
/ Codons
/ DNA probes
/ DNA, Neoplasm - analysis
/ DNA, Neoplasm - chemistry
/ Genes
/ Genes, ras - genetics
/ Hematologic and hematopoietic diseases
/ Humans
/ Hybridization
/ Immunophenotyping
/ Incidence
/ Leukemia
/ Leukemias. Malignant lymphomas. Malignant reticulosis. Myelofibrosis
/ Lymphatic leukemia
/ Lymphocytes T
/ Medical sciences
/ Melting
/ Melting curve
/ Mutation
/ Mutation hot spots
/ N-ras gene
/ Nucleotides
/ Point Mutation
/ Polymerase Chain Reaction - methods
/ Precursor Cell Lymphoblastic Leukemia-Lymphoma - genetics
/ Ras protein
/ Technology
2000
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Rapid and reliable detection of N-ras mutations in acute lymphoblastic leukemia by melting curve analysis using LightCycler technology
Journal Article
Rapid and reliable detection of N-ras mutations in acute lymphoblastic leukemia by melting curve analysis using LightCycler technology
2000
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Overview
We applied a new strategy for the detection of N-ras gene mutations based on LightCycler technology. We designed two sets of amplimers and internal hybridization probes representing N-ras codons 12/13 and codon 61, respectively. Genomic DNAs from 134 childhood acute lymphoblastic leukemia (ALL) patients (83 common ALL, nine pre-pre-B ALL, 19 pre-B ALL, 23 T-ALL) were amplified, followed by the analysis of the melting temperatures of the PCR products on the LightCycler. PCR products exhibiting an abnormal melting characteristic were directly sequenced. Sequence analyses unravelled nucleotide substitutions at codon 12 in 10 patients, at codon 13 in three, and at codon 61 in one case. The incidence of N-rasmutations (10%) is compatible with previous reports. The LightCycler technology facilitates the rapid analysis of other genes exhibiting hot spot mutations in human malignancies.
Publisher
Nature Publishing,Nature Publishing Group
Subject
/ Biological and medical sciences
/ Child
/ Children
/ Codon
/ Codons
/ Genes
/ Hematologic and hematopoietic diseases
/ Humans
/ Leukemia
/ Leukemias. Malignant lymphomas. Malignant reticulosis. Myelofibrosis
/ Melting
/ Mutation
/ Polymerase Chain Reaction - methods
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