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Comprehensive molecular profiling of UV-induced metastatic melanoma in Nme1/Nme2-deficient mice reveals novel markers of survival in human patients

Hepatocyte growth factor-overexpressing mice that harbor a deletion of the Ink4a/p16 locus (HP mice) form melanomas with low metastatic potential in response to UV irradiation. Here we report that these tumors become highly metastatic following hemizygous deletion of the Nme1 and Nme2 metastasis sup...

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Autores principales: Leonard, M. Kathryn, Puts, Gemma S., Pamidimukkala, Nidhi, Adhikary, Gautam, Xu, Yili, Kwok, Eric, Jin, Yuxin, Snyder, Devin, Matsangos, Nicolette, Novak, Marián, Mahurkar, Anup, Shetty, Amol C., Slominski, Radomir M., De Fabo, Edward C., Noonan, Frances P., Day, Chi-Ping, Rigi, Mohammed, Slominski, Andrzej T., Webb, Michelle G., Craig, David W., Merlino, Glenn, Eckert, Richard L., Carpten, John D., Manojlovic, Zarko, Kaetzel, David M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8595820/
https://www.ncbi.nlm.nih.gov/pubmed/34433909
http://dx.doi.org/10.1038/s41388-021-01998-w
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author Leonard, M. Kathryn
Puts, Gemma S.
Pamidimukkala, Nidhi
Adhikary, Gautam
Xu, Yili
Kwok, Eric
Jin, Yuxin
Snyder, Devin
Matsangos, Nicolette
Novak, Marián
Mahurkar, Anup
Shetty, Amol C.
Slominski, Radomir M.
De Fabo, Edward C.
Noonan, Frances P.
Day, Chi-Ping
Rigi, Mohammed
Slominski, Andrzej T.
Webb, Michelle G.
Craig, David W.
Merlino, Glenn
Eckert, Richard L.
Carpten, John D.
Manojlovic, Zarko
Kaetzel, David M.
author_facet Leonard, M. Kathryn
Puts, Gemma S.
Pamidimukkala, Nidhi
Adhikary, Gautam
Xu, Yili
Kwok, Eric
Jin, Yuxin
Snyder, Devin
Matsangos, Nicolette
Novak, Marián
Mahurkar, Anup
Shetty, Amol C.
Slominski, Radomir M.
De Fabo, Edward C.
Noonan, Frances P.
Day, Chi-Ping
Rigi, Mohammed
Slominski, Andrzej T.
Webb, Michelle G.
Craig, David W.
Merlino, Glenn
Eckert, Richard L.
Carpten, John D.
Manojlovic, Zarko
Kaetzel, David M.
author_sort Leonard, M. Kathryn
collection PubMed
description Hepatocyte growth factor-overexpressing mice that harbor a deletion of the Ink4a/p16 locus (HP mice) form melanomas with low metastatic potential in response to UV irradiation. Here we report that these tumors become highly metastatic following hemizygous deletion of the Nme1 and Nme2 metastasis suppressor genes (HPN mice). Whole genome sequencing of melanomas from HPN mice revealed a striking increase in lung metastatic activity that is associated with missense mutations in eight signature genes (Arhgap35, Atp8b4, Brca1, Ift172, Kif21b, Nckap5, Pcdha2 and Zfp869). RNA-seq analysis of transcriptomes from HP and HPN primary melanomas identified a 32-gene signature (HPN lung metastasis signature) for which decreased expression is strongly associated with lung metastatic potential. Analysis of transcriptome data from The Cancer Genome Atlas revealed expression profiles of these genes that predict improved survival of patients with cutaneous or uveal melanoma. Silencing of three representative HPN lung metastasis signature genes (ARRDC3, NYNRIN, RND3) in human melanoma cells resulted in increased invasive activity, consistent with roles for these genes as mediators of the metastasis suppressor function of NME1 and NME2. In conclusion, our studies have identified a family of genes that mediate suppression of melanoma lung metastasis, and which may serve as prognostic markers and/or therapeutic targets for clinical management of metastatic melanoma.
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spelling pubmed-85958202022-02-25 Comprehensive molecular profiling of UV-induced metastatic melanoma in Nme1/Nme2-deficient mice reveals novel markers of survival in human patients Leonard, M. Kathryn Puts, Gemma S. Pamidimukkala, Nidhi Adhikary, Gautam Xu, Yili Kwok, Eric Jin, Yuxin Snyder, Devin Matsangos, Nicolette Novak, Marián Mahurkar, Anup Shetty, Amol C. Slominski, Radomir M. De Fabo, Edward C. Noonan, Frances P. Day, Chi-Ping Rigi, Mohammed Slominski, Andrzej T. Webb, Michelle G. Craig, David W. Merlino, Glenn Eckert, Richard L. Carpten, John D. Manojlovic, Zarko Kaetzel, David M. Oncogene Article Hepatocyte growth factor-overexpressing mice that harbor a deletion of the Ink4a/p16 locus (HP mice) form melanomas with low metastatic potential in response to UV irradiation. Here we report that these tumors become highly metastatic following hemizygous deletion of the Nme1 and Nme2 metastasis suppressor genes (HPN mice). Whole genome sequencing of melanomas from HPN mice revealed a striking increase in lung metastatic activity that is associated with missense mutations in eight signature genes (Arhgap35, Atp8b4, Brca1, Ift172, Kif21b, Nckap5, Pcdha2 and Zfp869). RNA-seq analysis of transcriptomes from HP and HPN primary melanomas identified a 32-gene signature (HPN lung metastasis signature) for which decreased expression is strongly associated with lung metastatic potential. Analysis of transcriptome data from The Cancer Genome Atlas revealed expression profiles of these genes that predict improved survival of patients with cutaneous or uveal melanoma. Silencing of three representative HPN lung metastasis signature genes (ARRDC3, NYNRIN, RND3) in human melanoma cells resulted in increased invasive activity, consistent with roles for these genes as mediators of the metastasis suppressor function of NME1 and NME2. In conclusion, our studies have identified a family of genes that mediate suppression of melanoma lung metastasis, and which may serve as prognostic markers and/or therapeutic targets for clinical management of metastatic melanoma. 2021-08-25 2021-11 /pmc/articles/PMC8595820/ /pubmed/34433909 http://dx.doi.org/10.1038/s41388-021-01998-w Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms
spellingShingle Article
Leonard, M. Kathryn
Puts, Gemma S.
Pamidimukkala, Nidhi
Adhikary, Gautam
Xu, Yili
Kwok, Eric
Jin, Yuxin
Snyder, Devin
Matsangos, Nicolette
Novak, Marián
Mahurkar, Anup
Shetty, Amol C.
Slominski, Radomir M.
De Fabo, Edward C.
Noonan, Frances P.
Day, Chi-Ping
Rigi, Mohammed
Slominski, Andrzej T.
Webb, Michelle G.
Craig, David W.
Merlino, Glenn
Eckert, Richard L.
Carpten, John D.
Manojlovic, Zarko
Kaetzel, David M.
Comprehensive molecular profiling of UV-induced metastatic melanoma in Nme1/Nme2-deficient mice reveals novel markers of survival in human patients
title Comprehensive molecular profiling of UV-induced metastatic melanoma in Nme1/Nme2-deficient mice reveals novel markers of survival in human patients
title_full Comprehensive molecular profiling of UV-induced metastatic melanoma in Nme1/Nme2-deficient mice reveals novel markers of survival in human patients
title_fullStr Comprehensive molecular profiling of UV-induced metastatic melanoma in Nme1/Nme2-deficient mice reveals novel markers of survival in human patients
title_full_unstemmed Comprehensive molecular profiling of UV-induced metastatic melanoma in Nme1/Nme2-deficient mice reveals novel markers of survival in human patients
title_short Comprehensive molecular profiling of UV-induced metastatic melanoma in Nme1/Nme2-deficient mice reveals novel markers of survival in human patients
title_sort comprehensive molecular profiling of uv-induced metastatic melanoma in nme1/nme2-deficient mice reveals novel markers of survival in human patients
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8595820/
https://www.ncbi.nlm.nih.gov/pubmed/34433909
http://dx.doi.org/10.1038/s41388-021-01998-w
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