Literature DB >> 18306389

Expression of the nuclear export protein chromosomal region maintenance/exportin 1/Xpo1 is a prognostic factor in human ovarian cancer.

Aurelia Noske1, Wilko Weichert, Silvia Niesporek, Annika Röske, Ann-Christin Buckendahl, Ines Koch, Jalid Sehouli, Manfred Dietel, Carsten Denkert.   

Abstract

BACKGROUND: The human nuclear export protein chromosomal region maintenance/exportin 1/Xpo1 (CRM1) mediates the nuclear export of proteins and messenger RNAs and, thus, is an important regulator of subcellular distribution of key molecules. Whereas cell-biologic studies have suggested a fundamental role for CRM1 in the regulation of mitosis, the expression of this protein in human tumor tissue has not been investigated to date.
METHODS: In this study, the expression of CRM1 was analyzed in a cohort of 88 ovarian tumors and 12 ovarian cell lines for the first time to the authors' knowledge.
RESULTS: Immunohistochemistry revealed increased nuclear (52.7%) and cytoplasmic (56.8%) expression of CRM1 in 74 carcinomas compared with the expression revealed in borderline tumors and benign lesions. Similarly, CRM1 expression was increased in ovarian cancer cell lines compared with human ovarian surface epithelial cells. Cytoplasmic CRM1 expression was related significantly to advanced tumor stage (P= .043), poorly differentiated carcinomas (P= .011), and higher mitotic rate (P= .008). Nuclear CRM1 was associated significantly with cyclooxygenase-2 (COX-2) expression (P= .002) and poor overall survival (P= .01). Because it was demonstrated previously that blocking of CRM1 by leptomycin B (LMB) contributes to the inhibition of nuclear export, the authors used a set of mechanistic assays to study the effects of CRM1 inhibition in cancer cells. Treatment of OVCAR-3 cells with LMB revealed a significant reduction of cell proliferation and increased apoptosis as well as suppressed interleukin-1beta-induced COX-2 expression.
CONCLUSIONS: The current results indicated that CRM1 is expressed in a subpopulation of ovarian carcinomas with aggressive behavior and is related to poor patient outcome. A correlation also was demonstrated between CRM1 and COX-2 expression in ovarian cancer tissue. Furthermore, the treatment of ovarian cancer cells with LMB revealed a reduction in COX-2 expression. Therefore, the authors suggest that CRM1 may be an interesting biomarker for the assessment of patient prognosis and a molecular target for anticancer treatment.

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Year:  2008        PMID: 18306389     DOI: 10.1002/cncr.23354

Source DB:  PubMed          Journal:  Cancer        ISSN: 0008-543X            Impact factor:   6.860


  111 in total

1.  Preclinical antitumor efficacy of selective exportin 1 inhibitors in glioblastoma.

Authors:  Adam L Green; Shakti H Ramkissoon; Dilara McCauley; Kristen Jones; Jennifer A Perry; Jessie Hao-Ru Hsu; Lori A Ramkissoon; Cecile L Maire; Benjamin Hubbell-Engler; David S Knoff; Sharon Shacham; Keith L Ligon; Andrew L Kung
Journal:  Neuro Oncol       Date:  2014-11-02       Impact factor: 12.300

2.  Inhibition of CRM1-mediated nuclear export of transcription factors by leukemogenic NUP98 fusion proteins.

Authors:  Akiko Takeda; Nayan J Sarma; Anmaar M Abdul-Nabi; Nabeel R Yaseen
Journal:  J Biol Chem       Date:  2010-03-16       Impact factor: 5.157

3.  XPO1/CRM1 Inhibition Causes Antitumor Effects by Mitochondrial Accumulation of eIF5A.

Authors:  Takahito Miyake; Sunila Pradeep; Sherry Y Wu; Rajesha Rupaimoole; Behrouz Zand; Yunfei Wen; Kshipra M Gharpure; Archana S Nagaraja; Wei Hu; Min Soon Cho; Heather J Dalton; Rebecca A Previs; Morgan L Taylor; Takeshi Hisamatsu; Yu Kang; Tao Liu; Sharon Shacham; Dilara McCauley; David H Hawke; John E Wiktorowicz; Robert L Coleman; Anil K Sood
Journal:  Clin Cancer Res       Date:  2015-04-15       Impact factor: 12.531

4.  CRM1 is a novel independent prognostic factor for the poor prognosis of gastric carcinomas.

Authors:  Fang Zhou; Wensheng Qiu; Ruyong Yao; Jinyu Xiang; Xiaoxiao Sun; Shihai Liu; Jing Lv; Lu Yue
Journal:  Med Oncol       Date:  2013-09-12       Impact factor: 3.064

5.  Clinical Dosing Regimen of Selinexor Maintains Normal Immune Homeostasis and T-cell Effector Function in Mice: Implications for Combination with Immunotherapy.

Authors:  Paul M Tyler; Mariah M Servos; Romy C de Vries; Boris Klebanov; Trinayan Kashyap; Sharon Sacham; Yosef Landesman; Michael Dougan; Stephanie K Dougan
Journal:  Mol Cancer Ther       Date:  2017-02-01       Impact factor: 6.261

6.  Selective Nuclear Export Inhibitor KPT-330 Enhances the Antitumor Activity of Gemcitabine in Human Pancreatic Cancer.

Authors:  Sabiha Kazim; Mokenge P Malafa; Domenico Coppola; Kazim Husain; Sherma Zibadi; Trinayan Kashyap; Marsha Crochiere; Yosef Landesman; Tami Rashal; Daniel M Sullivan; Amit Mahipal
Journal:  Mol Cancer Ther       Date:  2015-05-01       Impact factor: 6.261

7.  LocNES: a computational tool for locating classical NESs in CRM1 cargo proteins.

Authors:  Darui Xu; Kara Marquis; Jimin Pei; Szu-Chin Fu; Tolga Cağatay; Nick V Grishin; Yuh Min Chook
Journal:  Bioinformatics       Date:  2014-12-15       Impact factor: 6.937

8.  Selective inhibitors of nuclear export show that CRM1/XPO1 is a target in chronic lymphocytic leukemia.

Authors:  Rosa Lapalombella; Qingxiang Sun; Katie Williams; Larissa Tangeman; Shruti Jha; Yiming Zhong; Virginia Goettl; Emilia Mahoney; Caroline Berglund; Sneha Gupta; Alicia Farmer; Rajeswaran Mani; Amy J Johnson; David Lucas; Xiaokui Mo; Dirk Daelemans; Vincent Sandanayaka; Sharon Shechter; Dilara McCauley; Sharon Shacham; Michael Kauffman; Yuh Min Chook; John C Byrd
Journal:  Blood       Date:  2012-10-03       Impact factor: 22.113

9.  XPO1 (CRM1) inhibition represses STAT3 activation to drive a survivin-dependent oncogenic switch in triple-negative breast cancer.

Authors:  Yan Cheng; Michael P Holloway; Kevin Nguyen; Dilara McCauley; Yosef Landesman; Michael G Kauffman; Sharon Shacham; Rachel A Altura
Journal:  Mol Cancer Ther       Date:  2014-01-15       Impact factor: 6.261

10.  CRM1 inhibition induces tumor cell cytotoxicity and impairs osteoclastogenesis in multiple myeloma: molecular mechanisms and therapeutic implications.

Authors:  Y-T Tai; Y Landesman; C Acharya; Y Calle; M Y Zhong; M Cea; D Tannenbaum; A Cagnetta; M Reagan; A A Munshi; W Senapedis; J R Saint-Martin; T Kashyap; S Shacham; M Kauffman; Y Gu; L Wu; I Ghobrial; F Zhan; A L Kung; S A Schey; P Richardson; N C Munshi; K C Anderson
Journal:  Leukemia       Date:  2013-04-16       Impact factor: 11.528

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