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Identification of expressed genes linked to malignancy of human colorectal carcinoma by parametric clustering of quantitative expression data

BACKGROUND: Individual human carcinomas have distinct biological and clinical properties: gene-expression profiling is expected to unveil the underlying molecular features. Particular interest has been focused on potential diagnostic and therapeutic applications. Solid tumors, such as colorectal car...

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Autores principales: Muro, Shizuko, Takemasa, Ichiro, Oba, Shigeyuki, Matoba, Ryo, Ueno, Noriko, Maruyama, Chiyuri, Yamashita, Riu, Sekimoto, Mitsugu, Yamamoto, Hirofumi, Nakamori, Shoji, Monden, Morito, Ishii, Shin, Kato, Kikuya
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2003
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC153461/
https://www.ncbi.nlm.nih.gov/pubmed/12620106
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author Muro, Shizuko
Takemasa, Ichiro
Oba, Shigeyuki
Matoba, Ryo
Ueno, Noriko
Maruyama, Chiyuri
Yamashita, Riu
Sekimoto, Mitsugu
Yamamoto, Hirofumi
Nakamori, Shoji
Monden, Morito
Ishii, Shin
Kato, Kikuya
author_facet Muro, Shizuko
Takemasa, Ichiro
Oba, Shigeyuki
Matoba, Ryo
Ueno, Noriko
Maruyama, Chiyuri
Yamashita, Riu
Sekimoto, Mitsugu
Yamamoto, Hirofumi
Nakamori, Shoji
Monden, Morito
Ishii, Shin
Kato, Kikuya
author_sort Muro, Shizuko
collection PubMed
description BACKGROUND: Individual human carcinomas have distinct biological and clinical properties: gene-expression profiling is expected to unveil the underlying molecular features. Particular interest has been focused on potential diagnostic and therapeutic applications. Solid tumors, such as colorectal carcinoma, present additional obstacles for experimental and data analysis. RESULTS: We analyzed the expression levels of 1,536 genes in 100 colorectal cancer and 11 normal tissues using adaptor-tagged competitive PCR, a high-throughput reverse transcription-PCR technique. A parametric clustering method using the Gaussian mixture model and the Bayes inference revealed three groups of expressed genes. Two contained large numbers of genes. One of these groups correlated well with both the differences between tumor and normal tissues and the presence or absence of distant metastasis, whereas the other correlated only with the tumor/normal difference. The third group comprised a small number of genes. Approximately half showed an identical expression pattern, and cancer tissues were classified into two groups by their expression levels. The high-expression group had strong correlation with distant metastasis, and a poorer survival rate than the low-expression group, indicating possible clinical applications of these genes. In addition to c-yes, a homolog of a viral oncogene, prognostic indicators included genes specific to glial cells, which gives a new link between malignancy and ectopic gene expression. CONCLUSIONS: The malignancy of human colorectal carcinoma is correlated with a unique expression pattern of a specific group of genes, allowing the classification of tumor tissues into two clinically distinct groups.
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spelling pubmed-1534612003-04-18 Identification of expressed genes linked to malignancy of human colorectal carcinoma by parametric clustering of quantitative expression data Muro, Shizuko Takemasa, Ichiro Oba, Shigeyuki Matoba, Ryo Ueno, Noriko Maruyama, Chiyuri Yamashita, Riu Sekimoto, Mitsugu Yamamoto, Hirofumi Nakamori, Shoji Monden, Morito Ishii, Shin Kato, Kikuya Genome Biol Research BACKGROUND: Individual human carcinomas have distinct biological and clinical properties: gene-expression profiling is expected to unveil the underlying molecular features. Particular interest has been focused on potential diagnostic and therapeutic applications. Solid tumors, such as colorectal carcinoma, present additional obstacles for experimental and data analysis. RESULTS: We analyzed the expression levels of 1,536 genes in 100 colorectal cancer and 11 normal tissues using adaptor-tagged competitive PCR, a high-throughput reverse transcription-PCR technique. A parametric clustering method using the Gaussian mixture model and the Bayes inference revealed three groups of expressed genes. Two contained large numbers of genes. One of these groups correlated well with both the differences between tumor and normal tissues and the presence or absence of distant metastasis, whereas the other correlated only with the tumor/normal difference. The third group comprised a small number of genes. Approximately half showed an identical expression pattern, and cancer tissues were classified into two groups by their expression levels. The high-expression group had strong correlation with distant metastasis, and a poorer survival rate than the low-expression group, indicating possible clinical applications of these genes. In addition to c-yes, a homolog of a viral oncogene, prognostic indicators included genes specific to glial cells, which gives a new link between malignancy and ectopic gene expression. CONCLUSIONS: The malignancy of human colorectal carcinoma is correlated with a unique expression pattern of a specific group of genes, allowing the classification of tumor tissues into two clinically distinct groups. BioMed Central 2003 2003-02-27 /pmc/articles/PMC153461/ /pubmed/12620106 Text en Copyright © 2003 Muro et al.; licensee BioMed Central Ltd. This is an Open Access article: verbatim copying and redistribution of this article are permitted in all media for any purpose, provided this notice is preserved along with the article's original URL.
spellingShingle Research
Muro, Shizuko
Takemasa, Ichiro
Oba, Shigeyuki
Matoba, Ryo
Ueno, Noriko
Maruyama, Chiyuri
Yamashita, Riu
Sekimoto, Mitsugu
Yamamoto, Hirofumi
Nakamori, Shoji
Monden, Morito
Ishii, Shin
Kato, Kikuya
Identification of expressed genes linked to malignancy of human colorectal carcinoma by parametric clustering of quantitative expression data
title Identification of expressed genes linked to malignancy of human colorectal carcinoma by parametric clustering of quantitative expression data
title_full Identification of expressed genes linked to malignancy of human colorectal carcinoma by parametric clustering of quantitative expression data
title_fullStr Identification of expressed genes linked to malignancy of human colorectal carcinoma by parametric clustering of quantitative expression data
title_full_unstemmed Identification of expressed genes linked to malignancy of human colorectal carcinoma by parametric clustering of quantitative expression data
title_short Identification of expressed genes linked to malignancy of human colorectal carcinoma by parametric clustering of quantitative expression data
title_sort identification of expressed genes linked to malignancy of human colorectal carcinoma by parametric clustering of quantitative expression data
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC153461/
https://www.ncbi.nlm.nih.gov/pubmed/12620106
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