Literature DB >> 15034597

Human heparanase nuclear localization and enzymatic activity.

Shay Y Schubert1, Neta Ilan, Moran Shushy, Ofer Ben-Izhak, Israel Vlodavsky, Orit Goldshmidt.   

Abstract

In previous studies, we have demonstrated that human heparanase (endo-beta-D-glucuronidase) is localized primarily in a perinuclear pattern within lysosomes and late endosomes, and occasionally may be surface associated and secreted. The presence of two potential nuclear localization sequences in human heparanase, led us to investigate heparanase translocation into the nucleus and subsequent degradation of nuclear heparan sulfate. Applying cell fractionation, Western blot analysis, determination of heparanase activity and confocal microscopy, we identified heparanase within the nuclei of human glioma and breast carcinoma cells and estimated its amount to be about 7% of the cytosolic enzyme. Our results indicate that nuclear heparanase colocalizes with nuclear heparan sulfate and is enzymaticaly active. Moreover, following uptake of latent 65 kDa heparanase by cells that do not express the enzyme, an active 50 kDa heparanase was detected in the cell nucleus, capable of degrading both nuclear and extracellular matrix-derived heparan sulfate. Immunohistochemical examination of human squamous cell carcinoma specimens revealed a prominent granular staining of heparanase within the nuclei of the epithelial tumor cells vs no nuclear staining in the adjacent stromal cells. Taken together, it appears that heparanase is translocated into the cell nucleus where it may degrade the nuclear heparan sulfate and thereby affect nuclear functions that are thought to be regulated by heparan sulfate. Nuclear localization of heparanase suggests that the enzyme may fulfill nontraditional functions (ie, regulation of gene expression and signal transduction) apart of its well-documented involvement in cancer metastasis, angiogenesis and inflammation.

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Year:  2004        PMID: 15034597     DOI: 10.1038/labinvest.3700084

Source DB:  PubMed          Journal:  Lab Invest        ISSN: 0023-6837            Impact factor:   5.662


  31 in total

1.  The endoglycosidase heparanase enters the nucleus of T lymphocytes and modulates H3 methylation at actively transcribed genes via the interplay with key chromatin modifying enzymes.

Authors:  Yi Qing He; Elissa L Sutcliffe; Karen L Bunting; Jasmine Li; Katharine J Goodall; Ivan K A Poon; Mark D Hulett; Craig Freeman; Anjum Zafar; Russell L McInnes; Toshiki Taya; Christopher R Parish; Sudha Rao
Journal:  Transcription       Date:  2012 May-Jun

2.  Heparanase-mediated loss of nuclear syndecan-1 enhances histone acetyltransferase (HAT) activity to promote expression of genes that drive an aggressive tumor phenotype.

Authors:  Anurag Purushothaman; Douglas R Hurst; Claudio Pisano; Shuji Mizumoto; Kazuyuki Sugahara; Ralph D Sanderson
Journal:  J Biol Chem       Date:  2011-07-11       Impact factor: 5.157

3.  Significance of heparanase in cancer and inflammation.

Authors:  Israel Vlodavsky; Phillip Beckhove; Immanuel Lerner; Claudio Pisano; Amichai Meirovitz; Neta Ilan; Michael Elkin
Journal:  Cancer Microenviron       Date:  2011-08-03

4.  Viral Activation of Heparanase Drives Pathogenesis of Herpes Simplex Virus-1.

Authors:  Alex M Agelidis; Satvik R Hadigal; Dinesh Jaishankar; Deepak Shukla
Journal:  Cell Rep       Date:  2017-07-11       Impact factor: 9.423

5.  Heparanase localization and expression by head and neck cancer: correlation with tumor progression and patient survival.

Authors:  Ilana Doweck; Victoria Kaplan-Cohen; Inna Naroditsky; Edmond Sabo; Neta Ilan; Israel Vlodavsky
Journal:  Neoplasia       Date:  2006-12       Impact factor: 5.715

6.  Heparanase and Chemotherapy Synergize to Drive Macrophage Activation and Enhance Tumor Growth.

Authors:  Udayan Bhattacharya; Lilach Gutter-Kapon; Tal Kan; Ilanit Boyango; Uri Barash; Shi-Ming Yang; JingJing Liu; Miriam Gross-Cohen; Ralph D Sanderson; Yuval Shaked; Neta Ilan; Israel Vlodavsky
Journal:  Cancer Res       Date:  2019-11-05       Impact factor: 12.701

7.  Nuclear heparanase-1 activity suppresses melanoma progression via its DNA-binding affinity.

Authors:  Y Yang; C Gorzelanny; A T Bauer; N Halter; D Komljenovic; T Bäuerle; L Borsig; M Roblek; S W Schneider
Journal:  Oncogene       Date:  2015-03-09       Impact factor: 9.867

8.  Heparanase upregulates Th2 cytokines, ameliorating experimental autoimmune encephalitis.

Authors:  Menachem Bitan; Lola Weiss; Israel Reibstein; Michael Zeira; Yakov Fellig; Shimon Slavin; Eyal Zcharia; Arnon Nagler; Israel Vlodavsky
Journal:  Mol Immunol       Date:  2010-06       Impact factor: 4.407

Review 9.  Heparanase and hepatocellular carcinoma: promoter or inhibitor?

Authors:  Shuo Dong; Xiong-Zhi Wu
Journal:  World J Gastroenterol       Date:  2010-01-21       Impact factor: 5.742

Review 10.  The heparanase/syndecan-1 axis in cancer: mechanisms and therapies.

Authors:  Vishnu C Ramani; Anurag Purushothaman; Mark D Stewart; Camilla A Thompson; Israel Vlodavsky; Jessie L-S Au; Ralph D Sanderson
Journal:  FEBS J       Date:  2013-03-04       Impact factor: 5.542

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