The gene expression profiles of primary and metastatic melanoma yields a transition point of tumor progression and metastasis

<p>Abstract</p> <p>Background</p> <p>The process of malignant transformation, progression and metastasis of melanoma is poorly understood. Gene expression profiling of human cancer has allowed for a unique insight into the genes that are involved in these processes. Thu...

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Main Authors: Li Wenbin, Shevde Lalita A, Samant Rajeev S, Metge Brandon, Howell Paul, Xi Yaguang, Morris Christopher, Ren Suping, Liu Suhu, Fodstad Oystein, Enkemann Steven A, Riker Adam I, Eschrich Steven, Daud Adil, Ju Jingfang, Matta Jaime
Format: Article
Language:English
Published: BMC 2008-04-01
Series:BMC Medical Genomics
Online Access:http://www.biomedcentral.com/1755-8794/1/13
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spelling doaj-9a6a613b7eaa42ff8162e6dab1934e262021-04-02T02:59:15ZengBMCBMC Medical Genomics1755-87942008-04-01111310.1186/1755-8794-1-13The gene expression profiles of primary and metastatic melanoma yields a transition point of tumor progression and metastasisLi WenbinShevde Lalita ASamant Rajeev SMetge BrandonHowell PaulXi YaguangMorris ChristopherRen SupingLiu SuhuFodstad OysteinEnkemann Steven ARiker Adam IEschrich StevenDaud AdilJu JingfangMatta Jaime<p>Abstract</p> <p>Background</p> <p>The process of malignant transformation, progression and metastasis of melanoma is poorly understood. Gene expression profiling of human cancer has allowed for a unique insight into the genes that are involved in these processes. Thus, we have attempted to utilize this approach through the analysis of a series of primary, non-metastatic cutaneous tumors and metastatic melanoma samples.</p> <p>Methods</p> <p>We have utilized gene microarray analysis and a variety of molecular techniques to compare 40 metastatic melanoma (MM) samples, composed of 22 bulky, macroscopic (replaced) lymph node metastases, 16 subcutaneous and 2 distant metastases (adrenal and brain), to 42 primary cutaneous cancers, comprised of 16 melanoma, 11 squamous cell, 15 basal cell skin cancers. A Human Genome U133 Plus 2.0 array from Affymetrix, Inc. was utilized for each sample. A variety of statistical software, including the Affymetrix MAS 5.0 analysis software, was utilized to compare primary cancers to metastatic melanomas. Separate analyses were performed to directly compare only primary melanoma to metastatic melanoma samples. The expression levels of putative oncogenes and tumor suppressor genes were analyzed by semi- and real-time quantitative RT-PCR (qPCR) and Western blot analysis was performed on select genes.</p> <p>Results</p> <p>We find that primary basal cell carcinomas, squamous cell carcinomas and thin melanomas express dramatically higher levels of many genes, including <it>SPRR1A/B</it>, <it>KRT16/17</it>, <it>CD24</it>, <it>LOR</it>, <it>GATA3</it>, <it>MUC15</it>, and <it>TMPRSS4</it>, than metastatic melanoma. In contrast, the metastatic melanomas express higher levels of genes such as <it>MAGE</it>, <it>GPR19</it>, <it>BCL2A1</it>, <it>MMP14</it>, <it>SOX5</it>, <it>BUB1</it>, <it>RGS20</it>, and more. The transition from non-metastatic expression levels to metastatic expression levels occurs as melanoma tumors thicken. We further evaluated primary melanomas of varying Breslow's tumor thickness to determine that the transition in expression occurs at different thicknesses for different genes suggesting that the "transition zone" represents a critical time for the emergence of the metastatic phenotype. Several putative tumor oncogenes (<it>SPP-1</it>, <it>MITF</it>, <it>CITED-1</it>, <it>GDF-15</it>, <it>c-Met</it>, <it>HOX </it>loci) and suppressor genes (<it>PITX-1</it>, <it>CST-6</it>, <it>PDGFRL</it>, <it>DSC-3</it>, <it>POU2F3</it>, <it>CLCA2</it>, <it>ST7L</it>), were identified and validated by quantitative PCR as changing expression during this transition period. These are strong candidates for genes involved in the progression or suppression of the metastatic phenotype.</p> <p>Conclusion</p> <p>The gene expression profiling of primary, non-metastatic cutaneous tumors and metastatic melanoma has resulted in the identification of several genes that may be centrally involved in the progression and metastatic potential of melanoma. This has very important implications as we continue to develop an improved understanding of the metastatic process, allowing us to identify specific genes for prognostic markers and possibly for targeted therapeutic approaches.</p> http://www.biomedcentral.com/1755-8794/1/13
collection DOAJ
language English
format Article
sources DOAJ
author Li Wenbin
Shevde Lalita A
Samant Rajeev S
Metge Brandon
Howell Paul
Xi Yaguang
Morris Christopher
Ren Suping
Liu Suhu
Fodstad Oystein
Enkemann Steven A
Riker Adam I
Eschrich Steven
Daud Adil
Ju Jingfang
Matta Jaime
spellingShingle Li Wenbin
Shevde Lalita A
Samant Rajeev S
Metge Brandon
Howell Paul
Xi Yaguang
Morris Christopher
Ren Suping
Liu Suhu
Fodstad Oystein
Enkemann Steven A
Riker Adam I
Eschrich Steven
Daud Adil
Ju Jingfang
Matta Jaime
The gene expression profiles of primary and metastatic melanoma yields a transition point of tumor progression and metastasis
BMC Medical Genomics
author_facet Li Wenbin
Shevde Lalita A
Samant Rajeev S
Metge Brandon
Howell Paul
Xi Yaguang
Morris Christopher
Ren Suping
Liu Suhu
Fodstad Oystein
Enkemann Steven A
Riker Adam I
Eschrich Steven
Daud Adil
Ju Jingfang
Matta Jaime
author_sort Li Wenbin
title The gene expression profiles of primary and metastatic melanoma yields a transition point of tumor progression and metastasis
title_short The gene expression profiles of primary and metastatic melanoma yields a transition point of tumor progression and metastasis
title_full The gene expression profiles of primary and metastatic melanoma yields a transition point of tumor progression and metastasis
title_fullStr The gene expression profiles of primary and metastatic melanoma yields a transition point of tumor progression and metastasis
title_full_unstemmed The gene expression profiles of primary and metastatic melanoma yields a transition point of tumor progression and metastasis
title_sort gene expression profiles of primary and metastatic melanoma yields a transition point of tumor progression and metastasis
publisher BMC
series BMC Medical Genomics
issn 1755-8794
publishDate 2008-04-01
description <p>Abstract</p> <p>Background</p> <p>The process of malignant transformation, progression and metastasis of melanoma is poorly understood. Gene expression profiling of human cancer has allowed for a unique insight into the genes that are involved in these processes. Thus, we have attempted to utilize this approach through the analysis of a series of primary, non-metastatic cutaneous tumors and metastatic melanoma samples.</p> <p>Methods</p> <p>We have utilized gene microarray analysis and a variety of molecular techniques to compare 40 metastatic melanoma (MM) samples, composed of 22 bulky, macroscopic (replaced) lymph node metastases, 16 subcutaneous and 2 distant metastases (adrenal and brain), to 42 primary cutaneous cancers, comprised of 16 melanoma, 11 squamous cell, 15 basal cell skin cancers. A Human Genome U133 Plus 2.0 array from Affymetrix, Inc. was utilized for each sample. A variety of statistical software, including the Affymetrix MAS 5.0 analysis software, was utilized to compare primary cancers to metastatic melanomas. Separate analyses were performed to directly compare only primary melanoma to metastatic melanoma samples. The expression levels of putative oncogenes and tumor suppressor genes were analyzed by semi- and real-time quantitative RT-PCR (qPCR) and Western blot analysis was performed on select genes.</p> <p>Results</p> <p>We find that primary basal cell carcinomas, squamous cell carcinomas and thin melanomas express dramatically higher levels of many genes, including <it>SPRR1A/B</it>, <it>KRT16/17</it>, <it>CD24</it>, <it>LOR</it>, <it>GATA3</it>, <it>MUC15</it>, and <it>TMPRSS4</it>, than metastatic melanoma. In contrast, the metastatic melanomas express higher levels of genes such as <it>MAGE</it>, <it>GPR19</it>, <it>BCL2A1</it>, <it>MMP14</it>, <it>SOX5</it>, <it>BUB1</it>, <it>RGS20</it>, and more. The transition from non-metastatic expression levels to metastatic expression levels occurs as melanoma tumors thicken. We further evaluated primary melanomas of varying Breslow's tumor thickness to determine that the transition in expression occurs at different thicknesses for different genes suggesting that the "transition zone" represents a critical time for the emergence of the metastatic phenotype. Several putative tumor oncogenes (<it>SPP-1</it>, <it>MITF</it>, <it>CITED-1</it>, <it>GDF-15</it>, <it>c-Met</it>, <it>HOX </it>loci) and suppressor genes (<it>PITX-1</it>, <it>CST-6</it>, <it>PDGFRL</it>, <it>DSC-3</it>, <it>POU2F3</it>, <it>CLCA2</it>, <it>ST7L</it>), were identified and validated by quantitative PCR as changing expression during this transition period. These are strong candidates for genes involved in the progression or suppression of the metastatic phenotype.</p> <p>Conclusion</p> <p>The gene expression profiling of primary, non-metastatic cutaneous tumors and metastatic melanoma has resulted in the identification of several genes that may be centrally involved in the progression and metastatic potential of melanoma. This has very important implications as we continue to develop an improved understanding of the metastatic process, allowing us to identify specific genes for prognostic markers and possibly for targeted therapeutic approaches.</p>
url http://www.biomedcentral.com/1755-8794/1/13
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