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LPCAT1-TERT fusions are uniquely recurrent in epithelioid trophoblastic tumors and positively regulate cell growth

Gestational trophoblastic disease (GTD) is a heterogeneous group of lesions arising from placental tissue. Epithelioid trophoblastic tumor (ETT), derived from chorionic-type trophoblast, is the rarest form of GTD with only approximately 130 cases described in the literature. Due to its morphologic m...

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Autores principales: Oliver, Gavin R., Marcano-Bonilla, Sofia, Quist, Jonathan, Tolosa, Ezequiel J., Iguchi, Eriko, Swanson, Amy A., Hoppman, Nicole L., Schwab, Tanya, Sigafoos, Ashley, Prodduturi, Naresh, Voss, Jesse S., Knight, Shannon M., Zhang, Jin, Fadra, Numrah, Urrutia, Raul, Zimmerman, Michael, Egan, Jan B., Bilyeu, Anthony G., Jen, Jin, Veras, Ema, Al-Safi, Rema’a, Block, Matthew, Kerr, Sarah, Fernandez-Zapico, Martin E., Schoolmeester, John K., Klee, Eric W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8148365/
https://www.ncbi.nlm.nih.gov/pubmed/34033669
http://dx.doi.org/10.1371/journal.pone.0250518
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author Oliver, Gavin R.
Marcano-Bonilla, Sofia
Quist, Jonathan
Tolosa, Ezequiel J.
Iguchi, Eriko
Swanson, Amy A.
Hoppman, Nicole L.
Schwab, Tanya
Sigafoos, Ashley
Prodduturi, Naresh
Voss, Jesse S.
Knight, Shannon M.
Zhang, Jin
Fadra, Numrah
Urrutia, Raul
Zimmerman, Michael
Egan, Jan B.
Bilyeu, Anthony G.
Jen, Jin
Veras, Ema
Al-Safi, Rema’a
Block, Matthew
Kerr, Sarah
Fernandez-Zapico, Martin E.
Schoolmeester, John K.
Klee, Eric W.
author_facet Oliver, Gavin R.
Marcano-Bonilla, Sofia
Quist, Jonathan
Tolosa, Ezequiel J.
Iguchi, Eriko
Swanson, Amy A.
Hoppman, Nicole L.
Schwab, Tanya
Sigafoos, Ashley
Prodduturi, Naresh
Voss, Jesse S.
Knight, Shannon M.
Zhang, Jin
Fadra, Numrah
Urrutia, Raul
Zimmerman, Michael
Egan, Jan B.
Bilyeu, Anthony G.
Jen, Jin
Veras, Ema
Al-Safi, Rema’a
Block, Matthew
Kerr, Sarah
Fernandez-Zapico, Martin E.
Schoolmeester, John K.
Klee, Eric W.
author_sort Oliver, Gavin R.
collection PubMed
description Gestational trophoblastic disease (GTD) is a heterogeneous group of lesions arising from placental tissue. Epithelioid trophoblastic tumor (ETT), derived from chorionic-type trophoblast, is the rarest form of GTD with only approximately 130 cases described in the literature. Due to its morphologic mimicry of epithelioid smooth muscle tumors and carcinoma, ETT can be misdiagnosed. To date, molecular characterization of ETTs is lacking. Furthermore, ETT is difficult to treat when disease spreads beyond the uterus. Here using RNA-Seq analysis in a cohort of ETTs and other gestational trophoblastic lesions we describe the discovery of LPCAT1-TERT fusion transcripts that occur in ETTs and coincide with underlying genomic deletions. Through cell-growth assays we demonstrate that LPCAT1-TERT fusion proteins can positively modulate cell proliferation and therefore may represent future treatment targets. Furthermore, we demonstrate that TERT upregulation appears to be a characteristic of ETTs, even in the absence of LPCAT1-TERT fusions, and that it appears linked to copy number gains of chromosome 5. No evidence of TERT upregulation was identified in other trophoblastic lesions tested, including placental site trophoblastic tumors and placental site nodules, which are thought to be the benign chorionic-type trophoblast counterpart to ETT. These findings indicate that LPCAT1-TERT fusions and copy-number driven TERT activation may represent novel markers for ETT, with the potential to improve the diagnosis, treatment, and outcome for women with this rare form of GTD.
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spelling pubmed-81483652021-06-07 LPCAT1-TERT fusions are uniquely recurrent in epithelioid trophoblastic tumors and positively regulate cell growth Oliver, Gavin R. Marcano-Bonilla, Sofia Quist, Jonathan Tolosa, Ezequiel J. Iguchi, Eriko Swanson, Amy A. Hoppman, Nicole L. Schwab, Tanya Sigafoos, Ashley Prodduturi, Naresh Voss, Jesse S. Knight, Shannon M. Zhang, Jin Fadra, Numrah Urrutia, Raul Zimmerman, Michael Egan, Jan B. Bilyeu, Anthony G. Jen, Jin Veras, Ema Al-Safi, Rema’a Block, Matthew Kerr, Sarah Fernandez-Zapico, Martin E. Schoolmeester, John K. Klee, Eric W. PLoS One Research Article Gestational trophoblastic disease (GTD) is a heterogeneous group of lesions arising from placental tissue. Epithelioid trophoblastic tumor (ETT), derived from chorionic-type trophoblast, is the rarest form of GTD with only approximately 130 cases described in the literature. Due to its morphologic mimicry of epithelioid smooth muscle tumors and carcinoma, ETT can be misdiagnosed. To date, molecular characterization of ETTs is lacking. Furthermore, ETT is difficult to treat when disease spreads beyond the uterus. Here using RNA-Seq analysis in a cohort of ETTs and other gestational trophoblastic lesions we describe the discovery of LPCAT1-TERT fusion transcripts that occur in ETTs and coincide with underlying genomic deletions. Through cell-growth assays we demonstrate that LPCAT1-TERT fusion proteins can positively modulate cell proliferation and therefore may represent future treatment targets. Furthermore, we demonstrate that TERT upregulation appears to be a characteristic of ETTs, even in the absence of LPCAT1-TERT fusions, and that it appears linked to copy number gains of chromosome 5. No evidence of TERT upregulation was identified in other trophoblastic lesions tested, including placental site trophoblastic tumors and placental site nodules, which are thought to be the benign chorionic-type trophoblast counterpart to ETT. These findings indicate that LPCAT1-TERT fusions and copy-number driven TERT activation may represent novel markers for ETT, with the potential to improve the diagnosis, treatment, and outcome for women with this rare form of GTD. Public Library of Science 2021-05-25 /pmc/articles/PMC8148365/ /pubmed/34033669 http://dx.doi.org/10.1371/journal.pone.0250518 Text en © 2021 Oliver et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Oliver, Gavin R.
Marcano-Bonilla, Sofia
Quist, Jonathan
Tolosa, Ezequiel J.
Iguchi, Eriko
Swanson, Amy A.
Hoppman, Nicole L.
Schwab, Tanya
Sigafoos, Ashley
Prodduturi, Naresh
Voss, Jesse S.
Knight, Shannon M.
Zhang, Jin
Fadra, Numrah
Urrutia, Raul
Zimmerman, Michael
Egan, Jan B.
Bilyeu, Anthony G.
Jen, Jin
Veras, Ema
Al-Safi, Rema’a
Block, Matthew
Kerr, Sarah
Fernandez-Zapico, Martin E.
Schoolmeester, John K.
Klee, Eric W.
LPCAT1-TERT fusions are uniquely recurrent in epithelioid trophoblastic tumors and positively regulate cell growth
title LPCAT1-TERT fusions are uniquely recurrent in epithelioid trophoblastic tumors and positively regulate cell growth
title_full LPCAT1-TERT fusions are uniquely recurrent in epithelioid trophoblastic tumors and positively regulate cell growth
title_fullStr LPCAT1-TERT fusions are uniquely recurrent in epithelioid trophoblastic tumors and positively regulate cell growth
title_full_unstemmed LPCAT1-TERT fusions are uniquely recurrent in epithelioid trophoblastic tumors and positively regulate cell growth
title_short LPCAT1-TERT fusions are uniquely recurrent in epithelioid trophoblastic tumors and positively regulate cell growth
title_sort lpcat1-tert fusions are uniquely recurrent in epithelioid trophoblastic tumors and positively regulate cell growth
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8148365/
https://www.ncbi.nlm.nih.gov/pubmed/34033669
http://dx.doi.org/10.1371/journal.pone.0250518
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