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Increased copy number at 3p14 in breast cancer

INTRODUCTION: The present study was conducted to investigate if chromosome band 3p14 is of any pathogenic significance in the malignant process of breast cancer. Genetic studies have implicated a tumour suppressor gene on chromosome arm 3p and we have proposed LRIG1 at 3p14 as a candidate tumour sup...

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Autores principales: Ljuslinder, Ingrid, Malmer, Beatrice, Golovleva, Irina, Thomasson, Marcus, Grankvist, Kjell, Höckenström, Thomas, Emdin, Stefan, Jonsson, Yvonne, Hedman, Håkan, Henriksson, Roger
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1242137/
https://www.ncbi.nlm.nih.gov/pubmed/16168117
http://dx.doi.org/10.1186/bcr1279
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author Ljuslinder, Ingrid
Malmer, Beatrice
Golovleva, Irina
Thomasson, Marcus
Grankvist, Kjell
Höckenström, Thomas
Emdin, Stefan
Jonsson, Yvonne
Hedman, Håkan
Henriksson, Roger
author_facet Ljuslinder, Ingrid
Malmer, Beatrice
Golovleva, Irina
Thomasson, Marcus
Grankvist, Kjell
Höckenström, Thomas
Emdin, Stefan
Jonsson, Yvonne
Hedman, Håkan
Henriksson, Roger
author_sort Ljuslinder, Ingrid
collection PubMed
description INTRODUCTION: The present study was conducted to investigate if chromosome band 3p14 is of any pathogenic significance in the malignant process of breast cancer. Genetic studies have implicated a tumour suppressor gene on chromosome arm 3p and we have proposed LRIG1 at 3p14 as a candidate tumour suppressor. The LRIG1 gene encodes an integral membrane protein that counteracts signalling by receptor tyrosine kinases belonging to the ERBB family. LRIG1 mRNA and protein are expressed in many tissues, including breast tissue. METHODS: In the present report we analysed the LRIG1 gene by fluorescence in situ hybridisation (FISH), LRIG1 mRNA by quantitative RT-PCR, and LRIG1 protein by western blot analysis. Two tumour series were analysed; one series consisted of 19 tumour samples collected between 1987 and 1995 and the other series consisted of 9 tumour samples with corresponding non-neoplastic breast tissues collected consecutively. RESULTS: The LRIG1 gene showed increased copy number in 11 out of 28 tumours (39%) and only one tumour showed a deletion at this locus. Increased LRIG1 copy number was associated with increased levels of LRIG1 mRNA (two of three tumours) and protein (four of four tumours) in the tumours compared to matched non-neoplastic breast tissue, as assessed by RT-PCR and western blot analysis. CONCLUSION: The molecular function of LRIG1 as a negative regulator of ERBB receptors questions the biological significance of increased LRIG1 copy number in breast cancer. We propose that a common, but hitherto unrecognised, breast cancer linked gene is located within an amplicon containing the LRIG1 locus at 3p14.3.
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spelling pubmed-12421372005-10-06 Increased copy number at 3p14 in breast cancer Ljuslinder, Ingrid Malmer, Beatrice Golovleva, Irina Thomasson, Marcus Grankvist, Kjell Höckenström, Thomas Emdin, Stefan Jonsson, Yvonne Hedman, Håkan Henriksson, Roger Breast Cancer Res Research Article INTRODUCTION: The present study was conducted to investigate if chromosome band 3p14 is of any pathogenic significance in the malignant process of breast cancer. Genetic studies have implicated a tumour suppressor gene on chromosome arm 3p and we have proposed LRIG1 at 3p14 as a candidate tumour suppressor. The LRIG1 gene encodes an integral membrane protein that counteracts signalling by receptor tyrosine kinases belonging to the ERBB family. LRIG1 mRNA and protein are expressed in many tissues, including breast tissue. METHODS: In the present report we analysed the LRIG1 gene by fluorescence in situ hybridisation (FISH), LRIG1 mRNA by quantitative RT-PCR, and LRIG1 protein by western blot analysis. Two tumour series were analysed; one series consisted of 19 tumour samples collected between 1987 and 1995 and the other series consisted of 9 tumour samples with corresponding non-neoplastic breast tissues collected consecutively. RESULTS: The LRIG1 gene showed increased copy number in 11 out of 28 tumours (39%) and only one tumour showed a deletion at this locus. Increased LRIG1 copy number was associated with increased levels of LRIG1 mRNA (two of three tumours) and protein (four of four tumours) in the tumours compared to matched non-neoplastic breast tissue, as assessed by RT-PCR and western blot analysis. CONCLUSION: The molecular function of LRIG1 as a negative regulator of ERBB receptors questions the biological significance of increased LRIG1 copy number in breast cancer. We propose that a common, but hitherto unrecognised, breast cancer linked gene is located within an amplicon containing the LRIG1 locus at 3p14.3. BioMed Central 2005 2005-07-06 /pmc/articles/PMC1242137/ /pubmed/16168117 http://dx.doi.org/10.1186/bcr1279 Text en Copyright © 2005 Ljuslinder et al.; licensee BioMed Central Ltd.
spellingShingle Research Article
Ljuslinder, Ingrid
Malmer, Beatrice
Golovleva, Irina
Thomasson, Marcus
Grankvist, Kjell
Höckenström, Thomas
Emdin, Stefan
Jonsson, Yvonne
Hedman, Håkan
Henriksson, Roger
Increased copy number at 3p14 in breast cancer
title Increased copy number at 3p14 in breast cancer
title_full Increased copy number at 3p14 in breast cancer
title_fullStr Increased copy number at 3p14 in breast cancer
title_full_unstemmed Increased copy number at 3p14 in breast cancer
title_short Increased copy number at 3p14 in breast cancer
title_sort increased copy number at 3p14 in breast cancer
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1242137/
https://www.ncbi.nlm.nih.gov/pubmed/16168117
http://dx.doi.org/10.1186/bcr1279
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