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Full-Length L1CAM and Not Its Δ2Δ27 Splice Variant Promotes Metastasis through Induction of Gelatinase Expression

Tumour-specific splicing is known to contribute to cancer progression. In the case of the L1 cell adhesion molecule (L1CAM), which is expressed in many human tumours and often linked to bad prognosis, alternative splicing results in a full-length form (FL-L1CAM) and a splice variant lacking exons 2...

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Autores principales: Hauser, Stephanie, Bickel, Laura, Weinspach, Dirk, Gerg, Michael, Schäfer, Michael K., Pfeifer, Marco, Hazin, John, Schelter, Florian, Weidle, Ulrich H., Ramser, Juliane, Volkmann, Juliane, Meindl, Alfons, Schmitt, Manfred, Schrötzlmair, Florian, Altevogt, Peter, Krüger, Achim
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3081839/
https://www.ncbi.nlm.nih.gov/pubmed/21541352
http://dx.doi.org/10.1371/journal.pone.0018989
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author Hauser, Stephanie
Bickel, Laura
Weinspach, Dirk
Gerg, Michael
Schäfer, Michael K.
Pfeifer, Marco
Hazin, John
Schelter, Florian
Weidle, Ulrich H.
Ramser, Juliane
Volkmann, Juliane
Meindl, Alfons
Schmitt, Manfred
Schrötzlmair, Florian
Altevogt, Peter
Krüger, Achim
author_facet Hauser, Stephanie
Bickel, Laura
Weinspach, Dirk
Gerg, Michael
Schäfer, Michael K.
Pfeifer, Marco
Hazin, John
Schelter, Florian
Weidle, Ulrich H.
Ramser, Juliane
Volkmann, Juliane
Meindl, Alfons
Schmitt, Manfred
Schrötzlmair, Florian
Altevogt, Peter
Krüger, Achim
author_sort Hauser, Stephanie
collection PubMed
description Tumour-specific splicing is known to contribute to cancer progression. In the case of the L1 cell adhesion molecule (L1CAM), which is expressed in many human tumours and often linked to bad prognosis, alternative splicing results in a full-length form (FL-L1CAM) and a splice variant lacking exons 2 and 27 (SV-L1CAM). It has not been elucidated so far whether SV-L1CAM, classically considered as tumour-associated, or whether FL-L1CAM is the metastasis-promoting isoform. Here, we show that both variants were expressed in human ovarian carcinoma and that exposure of tumour cells to pro-metastatic factors led to an exclusive increase of FL-L1CAM expression. Selective overexpression of one isoform in different tumour cells revealed that only FL-L1CAM promoted experimental lung and/or liver metastasis in mice. In addition, metastasis formation upon up-regulation of FL-L1CAM correlated with increased invasive potential and elevated Matrix metalloproteinase (MMP)-2 and -9 expression and activity in vitro as well as enhanced gelatinolytic activity in vivo. In conclusion, we identified FL-L1CAM as the metastasis-promoting isoform, thereby exemplifying that high expression of a so-called tumour-associated variant, here SV-L1CAM, is not per se equivalent to a decisive role of this isoform in tumour progression.
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spelling pubmed-30818392011-05-03 Full-Length L1CAM and Not Its Δ2Δ27 Splice Variant Promotes Metastasis through Induction of Gelatinase Expression Hauser, Stephanie Bickel, Laura Weinspach, Dirk Gerg, Michael Schäfer, Michael K. Pfeifer, Marco Hazin, John Schelter, Florian Weidle, Ulrich H. Ramser, Juliane Volkmann, Juliane Meindl, Alfons Schmitt, Manfred Schrötzlmair, Florian Altevogt, Peter Krüger, Achim PLoS One Research Article Tumour-specific splicing is known to contribute to cancer progression. In the case of the L1 cell adhesion molecule (L1CAM), which is expressed in many human tumours and often linked to bad prognosis, alternative splicing results in a full-length form (FL-L1CAM) and a splice variant lacking exons 2 and 27 (SV-L1CAM). It has not been elucidated so far whether SV-L1CAM, classically considered as tumour-associated, or whether FL-L1CAM is the metastasis-promoting isoform. Here, we show that both variants were expressed in human ovarian carcinoma and that exposure of tumour cells to pro-metastatic factors led to an exclusive increase of FL-L1CAM expression. Selective overexpression of one isoform in different tumour cells revealed that only FL-L1CAM promoted experimental lung and/or liver metastasis in mice. In addition, metastasis formation upon up-regulation of FL-L1CAM correlated with increased invasive potential and elevated Matrix metalloproteinase (MMP)-2 and -9 expression and activity in vitro as well as enhanced gelatinolytic activity in vivo. In conclusion, we identified FL-L1CAM as the metastasis-promoting isoform, thereby exemplifying that high expression of a so-called tumour-associated variant, here SV-L1CAM, is not per se equivalent to a decisive role of this isoform in tumour progression. Public Library of Science 2011-04-25 /pmc/articles/PMC3081839/ /pubmed/21541352 http://dx.doi.org/10.1371/journal.pone.0018989 Text en Hauser et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hauser, Stephanie
Bickel, Laura
Weinspach, Dirk
Gerg, Michael
Schäfer, Michael K.
Pfeifer, Marco
Hazin, John
Schelter, Florian
Weidle, Ulrich H.
Ramser, Juliane
Volkmann, Juliane
Meindl, Alfons
Schmitt, Manfred
Schrötzlmair, Florian
Altevogt, Peter
Krüger, Achim
Full-Length L1CAM and Not Its Δ2Δ27 Splice Variant Promotes Metastasis through Induction of Gelatinase Expression
title Full-Length L1CAM and Not Its Δ2Δ27 Splice Variant Promotes Metastasis through Induction of Gelatinase Expression
title_full Full-Length L1CAM and Not Its Δ2Δ27 Splice Variant Promotes Metastasis through Induction of Gelatinase Expression
title_fullStr Full-Length L1CAM and Not Its Δ2Δ27 Splice Variant Promotes Metastasis through Induction of Gelatinase Expression
title_full_unstemmed Full-Length L1CAM and Not Its Δ2Δ27 Splice Variant Promotes Metastasis through Induction of Gelatinase Expression
title_short Full-Length L1CAM and Not Its Δ2Δ27 Splice Variant Promotes Metastasis through Induction of Gelatinase Expression
title_sort full-length l1cam and not its δ2δ27 splice variant promotes metastasis through induction of gelatinase expression
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3081839/
https://www.ncbi.nlm.nih.gov/pubmed/21541352
http://dx.doi.org/10.1371/journal.pone.0018989
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