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Mxi1 Mutations in Human Neurofibrosarcomas
Mxi1 is thought to negatively regulate Myc function and may therefore be a potential tumor suppressor gene. Little effort has yet been made to find alterations involving this gene in human solid tumors. We screened 31 human gastric cancers, 7 esophageal cancers, 85 bone and soft tissue tumors of var...
Autores principales: | , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Blackwell Publishing Ltd
1999
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5926139/ https://www.ncbi.nlm.nih.gov/pubmed/10470286 http://dx.doi.org/10.1111/j.1349-7006.1999.tb00809.x |
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author | Li, Xiao‐Jin Wang, Dong‐Yu Zhu, Yue Guo, Rong‐Jun Wang, Xing‐Duo Lubomir, Kaco Mukai, Kiyoshi Sasaki, Hiroki Yoshida, Haruhiko Oka, Teruaki Machinami, Rikuo Shinmura, Kazuya Tanaka, Masamitsu Sugimura, Haruhiko |
author_facet | Li, Xiao‐Jin Wang, Dong‐Yu Zhu, Yue Guo, Rong‐Jun Wang, Xing‐Duo Lubomir, Kaco Mukai, Kiyoshi Sasaki, Hiroki Yoshida, Haruhiko Oka, Teruaki Machinami, Rikuo Shinmura, Kazuya Tanaka, Masamitsu Sugimura, Haruhiko |
author_sort | Li, Xiao‐Jin |
collection | PubMed |
description | Mxi1 is thought to negatively regulate Myc function and may therefore be a potential tumor suppressor gene. Little effort has yet been made to find alterations involving this gene in human solid tumors. We screened 31 human gastric cancers, 7 esophageal cancers, 85 bone and soft tissue tumors of various types, including 4 neurofibrosarcomas. We also examined 29 human tumor celllines consisting of 12 esophageal cancers, 7 glioma/glioblastomas and 10 others for Mxi1 mutations in exons 1, 2, 4 (HLH domain), 5 and 6. Polymerase chain reaction‐single‐strand conformation polymorphism (PCR‐SSCP) and subsequent sequencing revealed three distinct polymorphisms in the intron‐exon boundary upstream from exon 6. We discovered a missense mutation, GCA to GTA (Ala 54 Val), in exon 2 in a neurofibrosarcoma patient (case 1), two missense mutations, AAA to CAA (Lys 118 Gln) and GAA to GGA (Glu 154 Gly) in exon 5 of another neurofibrosarcoma patient (case 2), and 3 amino acid substitutions, GTG to GCG (Val 179 Ala), GTT to GCT (Val 181 Ala) and TTC to CTC (Phe 186 Leu), in a third neurofibrosarcoma patient (case 3). In case 3, loss of heterozygosity was also demonstrated by informative (TTC)3/(TTC)2 polymorphism. Our data demonstrate that mutations occur in the Mxi1 gene in neurofibrosarcoma. Missense mutations in the functional domain of Mxi1 in these cases may be involved in the pathogenesis of neurofibrosarcoma. |
format | Online Article Text |
id | pubmed-5926139 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 1999 |
publisher | Blackwell Publishing Ltd |
record_format | MEDLINE/PubMed |
spelling | pubmed-59261392018-05-11 Mxi1 Mutations in Human Neurofibrosarcomas Li, Xiao‐Jin Wang, Dong‐Yu Zhu, Yue Guo, Rong‐Jun Wang, Xing‐Duo Lubomir, Kaco Mukai, Kiyoshi Sasaki, Hiroki Yoshida, Haruhiko Oka, Teruaki Machinami, Rikuo Shinmura, Kazuya Tanaka, Masamitsu Sugimura, Haruhiko Jpn J Cancer Res Article Mxi1 is thought to negatively regulate Myc function and may therefore be a potential tumor suppressor gene. Little effort has yet been made to find alterations involving this gene in human solid tumors. We screened 31 human gastric cancers, 7 esophageal cancers, 85 bone and soft tissue tumors of various types, including 4 neurofibrosarcomas. We also examined 29 human tumor celllines consisting of 12 esophageal cancers, 7 glioma/glioblastomas and 10 others for Mxi1 mutations in exons 1, 2, 4 (HLH domain), 5 and 6. Polymerase chain reaction‐single‐strand conformation polymorphism (PCR‐SSCP) and subsequent sequencing revealed three distinct polymorphisms in the intron‐exon boundary upstream from exon 6. We discovered a missense mutation, GCA to GTA (Ala 54 Val), in exon 2 in a neurofibrosarcoma patient (case 1), two missense mutations, AAA to CAA (Lys 118 Gln) and GAA to GGA (Glu 154 Gly) in exon 5 of another neurofibrosarcoma patient (case 2), and 3 amino acid substitutions, GTG to GCG (Val 179 Ala), GTT to GCT (Val 181 Ala) and TTC to CTC (Phe 186 Leu), in a third neurofibrosarcoma patient (case 3). In case 3, loss of heterozygosity was also demonstrated by informative (TTC)3/(TTC)2 polymorphism. Our data demonstrate that mutations occur in the Mxi1 gene in neurofibrosarcoma. Missense mutations in the functional domain of Mxi1 in these cases may be involved in the pathogenesis of neurofibrosarcoma. Blackwell Publishing Ltd 1999-07 /pmc/articles/PMC5926139/ /pubmed/10470286 http://dx.doi.org/10.1111/j.1349-7006.1999.tb00809.x Text en |
spellingShingle | Article Li, Xiao‐Jin Wang, Dong‐Yu Zhu, Yue Guo, Rong‐Jun Wang, Xing‐Duo Lubomir, Kaco Mukai, Kiyoshi Sasaki, Hiroki Yoshida, Haruhiko Oka, Teruaki Machinami, Rikuo Shinmura, Kazuya Tanaka, Masamitsu Sugimura, Haruhiko Mxi1 Mutations in Human Neurofibrosarcomas |
title | Mxi1 Mutations in Human Neurofibrosarcomas |
title_full | Mxi1 Mutations in Human Neurofibrosarcomas |
title_fullStr | Mxi1 Mutations in Human Neurofibrosarcomas |
title_full_unstemmed | Mxi1 Mutations in Human Neurofibrosarcomas |
title_short | Mxi1 Mutations in Human Neurofibrosarcomas |
title_sort | mxi1 mutations in human neurofibrosarcomas |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5926139/ https://www.ncbi.nlm.nih.gov/pubmed/10470286 http://dx.doi.org/10.1111/j.1349-7006.1999.tb00809.x |
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