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Mutation Analysis of hCDC4 in AML Cells Identifies a New Intronic Polymorphism

hCDC4 (FBW7, FBXW7) is a new potential tumor suppressor gene which provides substrate specificity for SCF (Skp–Cullin–F-box) ubiquitin ligases and thereby regulates the degradation of potent oncogenes such as cyclin E, Myc, c-Jun and Notch. Mutations in the hCDC4 gene have been found in several soli...

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Autores principales: Nowak, Daniel, Mossner, Maximilian, Baldus, Claudia D., Hopfer, Olaf, Thiel, Eckhard, Hofmann, Wolf-Karsten
Formato: Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1633823/
https://www.ncbi.nlm.nih.gov/pubmed/17088941
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author Nowak, Daniel
Mossner, Maximilian
Baldus, Claudia D.
Hopfer, Olaf
Thiel, Eckhard
Hofmann, Wolf-Karsten
author_facet Nowak, Daniel
Mossner, Maximilian
Baldus, Claudia D.
Hopfer, Olaf
Thiel, Eckhard
Hofmann, Wolf-Karsten
author_sort Nowak, Daniel
collection PubMed
description hCDC4 (FBW7, FBXW7) is a new potential tumor suppressor gene which provides substrate specificity for SCF (Skp–Cullin–F-box) ubiquitin ligases and thereby regulates the degradation of potent oncogenes such as cyclin E, Myc, c-Jun and Notch. Mutations in the hCDC4 gene have been found in several solid tumors such as pancreas, colorectal or endometrial cancer. We carried out a mutation analysis of the hCDC4 gene in 35 samples of patients with Acute Myeloid Leukemia (AML) to elucidate a possible role of hCDC4 mutations in this disease. By direct DNA sequencing and digestion with Surveyor nuclease one heterozygous mutation in the 5' untranslated region of exon 1, transcript variant 3 was detected. Additionally, we could identify a new intronic SNP downstream of exon 10. The new variation was present in 20% of AML samples and was furthermore confirmed in a panel of 51 healthy individuals where it displayed a frequency of 14%. In conclusion we provide first data that in contrast to several solid tumors, mutations in the hCDC4 gene may not play a pivotal role in the pathogenesis of AML. Furthermore, we describe a new intronic polymorphism with high frequency in the intron sequence of the hCDC4 gene.
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spelling pubmed-16338232006-11-06 Mutation Analysis of hCDC4 in AML Cells Identifies a New Intronic Polymorphism Nowak, Daniel Mossner, Maximilian Baldus, Claudia D. Hopfer, Olaf Thiel, Eckhard Hofmann, Wolf-Karsten Int J Med Sci Short Research Communication hCDC4 (FBW7, FBXW7) is a new potential tumor suppressor gene which provides substrate specificity for SCF (Skp–Cullin–F-box) ubiquitin ligases and thereby regulates the degradation of potent oncogenes such as cyclin E, Myc, c-Jun and Notch. Mutations in the hCDC4 gene have been found in several solid tumors such as pancreas, colorectal or endometrial cancer. We carried out a mutation analysis of the hCDC4 gene in 35 samples of patients with Acute Myeloid Leukemia (AML) to elucidate a possible role of hCDC4 mutations in this disease. By direct DNA sequencing and digestion with Surveyor nuclease one heterozygous mutation in the 5' untranslated region of exon 1, transcript variant 3 was detected. Additionally, we could identify a new intronic SNP downstream of exon 10. The new variation was present in 20% of AML samples and was furthermore confirmed in a panel of 51 healthy individuals where it displayed a frequency of 14%. In conclusion we provide first data that in contrast to several solid tumors, mutations in the hCDC4 gene may not play a pivotal role in the pathogenesis of AML. Furthermore, we describe a new intronic polymorphism with high frequency in the intron sequence of the hCDC4 gene. Ivyspring International Publisher 2006-10-26 /pmc/articles/PMC1633823/ /pubmed/17088941 Text en © Ivyspring International Publisher. This is an open access article. Reproduction is permitted for personal and noncommerical use, provided that the article is in whole, unmodified, and properly cited.
spellingShingle Short Research Communication
Nowak, Daniel
Mossner, Maximilian
Baldus, Claudia D.
Hopfer, Olaf
Thiel, Eckhard
Hofmann, Wolf-Karsten
Mutation Analysis of hCDC4 in AML Cells Identifies a New Intronic Polymorphism
title Mutation Analysis of hCDC4 in AML Cells Identifies a New Intronic Polymorphism
title_full Mutation Analysis of hCDC4 in AML Cells Identifies a New Intronic Polymorphism
title_fullStr Mutation Analysis of hCDC4 in AML Cells Identifies a New Intronic Polymorphism
title_full_unstemmed Mutation Analysis of hCDC4 in AML Cells Identifies a New Intronic Polymorphism
title_short Mutation Analysis of hCDC4 in AML Cells Identifies a New Intronic Polymorphism
title_sort mutation analysis of hcdc4 in aml cells identifies a new intronic polymorphism
topic Short Research Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1633823/
https://www.ncbi.nlm.nih.gov/pubmed/17088941
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