Karyopherin α2-dependent import of E2F1 and TFDP1 maintains protumorigenic stathmin expression in liver cancer

Abstract Background Members of the karyopherin superfamily serve as nuclear transport receptors/adaptor proteins and provide exchange of macromolecules between the nucleo- and cytoplasm. Emerging evidence suggests a subset of karyopherins to be dysregulated in hepatocarcinogenesis including karyophe...

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Main Authors: Elisabeth Drucker, Kerstin Holzer, Stefan Pusch, Juliane Winkler, Diego F. Calvisi, Eva Eiteneuer, Esther Herpel, Benjamin Goeppert, Stephanie Roessler, Alessandro Ori, Peter Schirmacher, Kai Breuhahn, Stephan Singer
Format: Article
Language:English
Published: BMC 2019-11-01
Series:Cell Communication and Signaling
Subjects:
HCC
Online Access:https://doi.org/10.1186/s12964-019-0456-x
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spelling doaj-42143b48aec0473c912b51d87d00d1c92020-11-29T12:12:07ZengBMCCell Communication and Signaling1478-811X2019-11-0117111410.1186/s12964-019-0456-xKaryopherin α2-dependent import of E2F1 and TFDP1 maintains protumorigenic stathmin expression in liver cancerElisabeth Drucker0Kerstin Holzer1Stefan Pusch2Juliane Winkler3Diego F. Calvisi4Eva Eiteneuer5Esther Herpel6Benjamin Goeppert7Stephanie Roessler8Alessandro Ori9Peter Schirmacher10Kai Breuhahn11Stephan Singer12Institute of Pathology, University Hospital HeidelbergInstitute of Pathology, University Medicine GreifswaldDepartment of Neuropathology, Institute of Pathology, University Hospital HeidelbergDepartment of Anatomy, University of CaliforniaInstitute of Pathology, University RegensburgInstitute of Pathology, University Hospital HeidelbergInstitute of Pathology, University Hospital HeidelbergInstitute of Pathology, University Hospital HeidelbergInstitute of Pathology, University Hospital HeidelbergEuropean Molecular Biology Laboratory, Structural and Computational Biology UnitInstitute of Pathology, University Hospital HeidelbergInstitute of Pathology, University Hospital HeidelbergInstitute of Pathology, University Hospital HeidelbergAbstract Background Members of the karyopherin superfamily serve as nuclear transport receptors/adaptor proteins and provide exchange of macromolecules between the nucleo- and cytoplasm. Emerging evidence suggests a subset of karyopherins to be dysregulated in hepatocarcinogenesis including karyopherin-α2 (KPNA2). However, the functional and regulatory role of KPNA2 in liver cancer remains incompletely understood. Methods Quantitative proteomics (LC-MS/MS, ~ 1750 proteins in total) was used to study changes in global protein abundance upon siRNA-mediated KPNA2 knockdown in HCC cells. Functional and mechanistic analyses included colony formation and 2D migration assays, co-immunoprecipitation (CoIP), chromatin immunoprecipitation (ChIP), qRT-PCR, immmunblotting, and subcellular fractionation. In vitro results were correlated with data derived from a murine HCC model and HCC patient samples (3 cohorts, n > 600 in total). Results The proteomic approach revealed the pro-tumorigenic, microtubule (MT) interacting protein stathmin (STMN1) among the most downregulated proteins upon KPNA2 depletion in HCC cells. We further observed that KPNA2 knockdown leads to reduced tumor cell migration and colony formation of HCC cells, which could be phenocopied by direct knockdown of stathmin. As the underlying regulatory mechanism, we uncovered E2F1 and TFDP1 as transport substrates of KPNA2 being retained in the cytoplasm upon KPNA2 ablation, thereby resulting in reduced STMN1 expression. Finally, murine and human HCC data indicate significant correlations of STMN1 expression with E2F1/TFPD1 and with KPNA2 expression and their association with poor prognosis in HCC patients. Conclusion Our data suggest that KPNA2 regulates STMN1 by import of E2F1/TFDP1 and thereby provide a novel link between nuclear transport and MT-interacting proteins in HCC with functional and prognostic significance.https://doi.org/10.1186/s12964-019-0456-xKaryopherinStathminHCCE2F1TFDP1Nuclear transport
collection DOAJ
language English
format Article
sources DOAJ
author Elisabeth Drucker
Kerstin Holzer
Stefan Pusch
Juliane Winkler
Diego F. Calvisi
Eva Eiteneuer
Esther Herpel
Benjamin Goeppert
Stephanie Roessler
Alessandro Ori
Peter Schirmacher
Kai Breuhahn
Stephan Singer
spellingShingle Elisabeth Drucker
Kerstin Holzer
Stefan Pusch
Juliane Winkler
Diego F. Calvisi
Eva Eiteneuer
Esther Herpel
Benjamin Goeppert
Stephanie Roessler
Alessandro Ori
Peter Schirmacher
Kai Breuhahn
Stephan Singer
Karyopherin α2-dependent import of E2F1 and TFDP1 maintains protumorigenic stathmin expression in liver cancer
Cell Communication and Signaling
Karyopherin
Stathmin
HCC
E2F1
TFDP1
Nuclear transport
author_facet Elisabeth Drucker
Kerstin Holzer
Stefan Pusch
Juliane Winkler
Diego F. Calvisi
Eva Eiteneuer
Esther Herpel
Benjamin Goeppert
Stephanie Roessler
Alessandro Ori
Peter Schirmacher
Kai Breuhahn
Stephan Singer
author_sort Elisabeth Drucker
title Karyopherin α2-dependent import of E2F1 and TFDP1 maintains protumorigenic stathmin expression in liver cancer
title_short Karyopherin α2-dependent import of E2F1 and TFDP1 maintains protumorigenic stathmin expression in liver cancer
title_full Karyopherin α2-dependent import of E2F1 and TFDP1 maintains protumorigenic stathmin expression in liver cancer
title_fullStr Karyopherin α2-dependent import of E2F1 and TFDP1 maintains protumorigenic stathmin expression in liver cancer
title_full_unstemmed Karyopherin α2-dependent import of E2F1 and TFDP1 maintains protumorigenic stathmin expression in liver cancer
title_sort karyopherin α2-dependent import of e2f1 and tfdp1 maintains protumorigenic stathmin expression in liver cancer
publisher BMC
series Cell Communication and Signaling
issn 1478-811X
publishDate 2019-11-01
description Abstract Background Members of the karyopherin superfamily serve as nuclear transport receptors/adaptor proteins and provide exchange of macromolecules between the nucleo- and cytoplasm. Emerging evidence suggests a subset of karyopherins to be dysregulated in hepatocarcinogenesis including karyopherin-α2 (KPNA2). However, the functional and regulatory role of KPNA2 in liver cancer remains incompletely understood. Methods Quantitative proteomics (LC-MS/MS, ~ 1750 proteins in total) was used to study changes in global protein abundance upon siRNA-mediated KPNA2 knockdown in HCC cells. Functional and mechanistic analyses included colony formation and 2D migration assays, co-immunoprecipitation (CoIP), chromatin immunoprecipitation (ChIP), qRT-PCR, immmunblotting, and subcellular fractionation. In vitro results were correlated with data derived from a murine HCC model and HCC patient samples (3 cohorts, n > 600 in total). Results The proteomic approach revealed the pro-tumorigenic, microtubule (MT) interacting protein stathmin (STMN1) among the most downregulated proteins upon KPNA2 depletion in HCC cells. We further observed that KPNA2 knockdown leads to reduced tumor cell migration and colony formation of HCC cells, which could be phenocopied by direct knockdown of stathmin. As the underlying regulatory mechanism, we uncovered E2F1 and TFDP1 as transport substrates of KPNA2 being retained in the cytoplasm upon KPNA2 ablation, thereby resulting in reduced STMN1 expression. Finally, murine and human HCC data indicate significant correlations of STMN1 expression with E2F1/TFPD1 and with KPNA2 expression and their association with poor prognosis in HCC patients. Conclusion Our data suggest that KPNA2 regulates STMN1 by import of E2F1/TFDP1 and thereby provide a novel link between nuclear transport and MT-interacting proteins in HCC with functional and prognostic significance.
topic Karyopherin
Stathmin
HCC
E2F1
TFDP1
Nuclear transport
url https://doi.org/10.1186/s12964-019-0456-x
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