Literature DB >> 18723071

TPX2 in malignantly transformed human bronchial epithelial cells by anti-benzo[a]pyrene-7,8-diol-9,10-epoxide.

Lijuan Zhang1, He Huang, Luyao Deng, Ming Chu, Lan Xu, Juanling Fu, Yunlan Zhu, Xiuchun Zhang, Shulin Liu, Zongcan Zhou, Yuedan Wang.   

Abstract

In order to elucidate the function of the targeting protein for Xenopus kinesin-like protein 2 (Xklp2) (TPX2) in the malignant transformation of human bronchial epithelial cells induced by anti-benzo[a]pyrene-trans-7, 8-dihydrodiol-9, 10-epoxide (anti-BPDE), TPX2 was characterized in cells at both the gene and the protein levels. TPX2 was present at higher levels in 16HBE-C cells than in 16HBE cells as demonstrated by two-dimensional gel electrophoresis, immunocytochemistry, Western blot analysis and RT-PCR. TPX2 was also detected in lung squamous-cell carcinoma tissues by immunohistochemistry, but not in normal lung tissues. Depression of TPX2 by RNA interference in 16HBE-C cells led to a decrease in cell proliferation, S-phase cell cycle arrest and cell apoptosis. Abnormal TPX2 tyrosine phosphorylation was detected in 16HBE-C cells, and this could be inhibited, to different degrees, by tyrosine kinase inhibitors. Inhibiting tyrosine phosphorylation in 16HBE-C cells by three selected tyrosine protein kinase inhibitors, tyrphostin 47, AG112 and AG555, caused G(0)/G(1)-phase cell cycle arrest. Our results suggest that anti-BPDE can cause the over-expression of TPX2 and its aberrant tyrosine phosphorylation. Misregulation of TPX2 affects the cell cycle state, proliferation rates and apoptosis.

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Year:  2008        PMID: 18723071     DOI: 10.1016/j.tox.2008.07.059

Source DB:  PubMed          Journal:  Toxicology        ISSN: 0300-483X            Impact factor:   4.221


  7 in total

Review 1.  TPX2: of spindle assembly, DNA damage response, and cancer.

Authors:  Gernot Neumayer; Camille Belzil; Oliver J Gruss; Minh Dang Nguyen
Journal:  Cell Mol Life Sci       Date:  2014-02-21       Impact factor: 9.261

2.  Glioma pathogenesis-related protein 1 induces prostate cancer cell death through Hsc70-mediated suppression of AURKA and TPX2.

Authors:  Likun Li; Guang Yang; Chengzhen Ren; Ryuta Tanimoto; Takahiro Hirayama; Jianxiang Wang; David Hawke; Soo Mi Kim; Ju-Seog Lee; Alexei A Goltsov; Sanghee Park; Michael M Ittmann; Patricia Troncoso; Timothy C Thompson
Journal:  Mol Oncol       Date:  2012-12-31       Impact factor: 6.603

3.  Mitotic Stress and Chromosomal Instability in Cancer: The Case for TPX2.

Authors:  Ignacio Pérez de Castro; Marcos Malumbres
Journal:  Genes Cancer       Date:  2012-11

4.  Ashwagandha derived withanone targets TPX2-Aurora A complex: computational and experimental evidence to its anticancer activity.

Authors:  Abhinav Grover; Rumani Singh; Ashutosh Shandilya; Didik Priyandoko; Vibhuti Agrawal; Virendra S Bisaria; Renu Wadhwa; Sunil C Kaul; Durai Sundar
Journal:  PLoS One       Date:  2012-01-27       Impact factor: 3.240

5.  Upregulation of TPX2 by STAT3: identification of a novel STAT3 binding site.

Authors:  Rossana Cocchiola; Caterina Grillo; Fabio Altieri; Silvia Chichiarelli; Carlo Turano; Margherita Eufemi
Journal:  PLoS One       Date:  2014-11-17       Impact factor: 3.240

6.  Identification and Verification of Biomarker in Clear Cell Renal Cell Carcinoma via Bioinformatics and Neural Network Model.

Authors:  Bin Liu; Yu Xiao; Hao Li; Ai-Li Zhang; Ling-Bing Meng; Lu Feng; Zhi-Hong Zhao; Xiao-Chen Ni; Bo Fan; Xiao-Yu Zhang; Shi-Bin Zhao; Yi-Bo Liu
Journal:  Biomed Res Int       Date:  2020-06-15       Impact factor: 3.411

7.  Targeting DTL induces cell cycle arrest and senescence and suppresses cell growth and colony formation through TPX2 inhibition in human hepatocellular carcinoma cells.

Authors:  Yu-Chia Chen; I-Shu Chen; Guan-Jin Huang; Chi-Hsiang Kang; Kuo-Chiang Wang; Min-Jen Tsao; Hung-Wei Pan
Journal:  Onco Targets Ther       Date:  2018-03-21       Impact factor: 4.147

  7 in total

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