Literature DB >> 15870888

Differential expression analysis of MIM (MTSS1) splice variants and a functional role of MIM in prostate cancer cell biology.

Robert D Loberg1, Chris K Neeley, Lashon L Adam-Day, Yaron Fridman, Lauren N St John, Sheri Nixdorf, Paul Jackson, Linda M Kalikin, Kenneth J Pienta.   

Abstract

We previously identified MIM-A (missing in metastasis, MTSS1) by differential display techniques as missing in invasive, metastatic bladder cancer cell lines and suggested that MIM-A is a novel putative metastasis suppressor gene. Characterization of the MIM gene revealed a WH2 (Wiskott-Aldrich syndrome protein homology 2) domain in the C-terminus that is known to bind actin monomers and regulate organization of the actin cytoskeleton. Here, we further describe two alternatively splice variants of MIM-A, called MIM(12del) and MIM-B, which share > 50% amino acid sequence homology with MIM-A in the C-terminal domain. We show that expression of all three transcripts is down-regulated in prostate cancer cell lines and tumor samples from patients. In addition, we generated stably-transfected PC-3 cells overexpressing MIM-A to evaluate the importance of MIM-A in prostate cancer biology. The initial experiments show that expression of MIM decreased the number of actin filaments and was associated with a decrease in the G:F actin ratio. Overexpression of MIM-A had no effect on PC-3 cell adhesion to extracellular matrices, as well as no effect on PC-3 motility. Further, overexpression of MIM-A reduced the rate of PC-3 cell proliferation. These results support the hypothesis that MIM-A is an actin-binding protein and implicate a role of MIM-A in the regulation of cellular proliferation. These data suggest that the reduction of MIM-A gene expression in prostate cancer and other cancers may contribute to tumor growth and development, as well as metastasis.

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Year:  2005        PMID: 15870888

Source DB:  PubMed          Journal:  Int J Oncol        ISSN: 1019-6439            Impact factor:   5.650


  28 in total

1.  miR-96 promotes the growth of prostate carcinoma cells by suppressing MTSS1.

Authors:  Libo Xu; Jiateng Zhong; Baofeng Guo; Qi Zhu; Hang Liang; Naiyan Wen; Wenjing Yun; Ling Zhang
Journal:  Tumour Biol       Date:  2016-05-11

2.  miR-23a promotes the transition from indolent to invasive colorectal cancer.

Authors:  Sohail Jahid; Jian Sun; Robert A Edwards; Diana Dizon; Nicole C Panarelli; Jeffrey W Milsom; Shaheen S Sikandar; Zeynep H Gümüs; Steven M Lipkin
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3.  Role of Akt2 in regulation of metastasis suppressor 1 expression and colorectal cancer metastasis.

Authors:  E Agarwal; C M Robb; L M Smith; M G Brattain; J Wang; J D Black; S Chowdhury
Journal:  Oncogene       Date:  2017-01-09       Impact factor: 9.867

4.  MTSS1 overexpression correlates with poor prognosis in colorectal cancer.

Authors:  Ding Wang; Mei-rong Xu; Tao Wang; Ting Li; Jian wei Zhu
Journal:  J Gastrointest Surg       Date:  2011-05-12       Impact factor: 3.452

5.  Metastasis tumour suppressor-1 and the aggressiveness of prostate cancer cells.

Authors:  Noha Mustafa; Tracey A Martin; Wen G Jiang
Journal:  Exp Ther Med       Date:  2010-12-02       Impact factor: 2.447

6.  Mice deficient in MIM expression are predisposed to lymphomagenesis.

Authors:  D Yu; X H Zhan; X F Zhao; M S Williams; G B Carey; E Smith; D Scott; J Zhu; Y Guo; S Cherukuri; C I Civin; X Zhan
Journal:  Oncogene       Date:  2011-11-14       Impact factor: 9.867

Review 7.  Cytoskeleton targeting value in prostate cancer treatment.

Authors:  Sarah K Martin; Marisa Kamelgarn; Natasha Kyprianou
Journal:  Am J Clin Exp Urol       Date:  2014-04-05

8.  Downregulation of metastasis suppressor 1(MTSS1) is associated with nodal metastasis and poor outcome in Chinese patients with gastric cancer.

Authors:  Ke Liu; Gefang Wang; Houzhong Ding; Ying Chen; Guanzhen Yu; Jiejun Wang
Journal:  BMC Cancer       Date:  2010-08-15       Impact factor: 4.430

9.  Overexpression of maelstrom promotes bladder urothelial carcinoma cell aggressiveness by epigenetically downregulating MTSS1 through DNMT3B.

Authors:  X-D Li; J-X Zhang; L-J Jiang; F-W Wang; L-L Liu; Y-J Liao; X-H Jin; W-H Chen; X Chen; S-J Guo; F-J Zhou; Y-X Zeng; X-Y Guan; Z-W Liu; D Xie
Journal:  Oncogene       Date:  2016-05-16       Impact factor: 9.867

10.  Chromophobe renal cell carcinoma with and without sarcomatoid change: a clinicopathological, comparative genomic hybridization, and whole-exome sequencing study.

Authors:  Yuan Ren; Kunpeng Liu; Xueling Kang; Lijuan Pang; Yan Qi; Zhenyan Hu; Wei Jia; Haijun Zhang; Li Li; Jianming Hu; Weihua Liang; Jin Zhao; Hong Zou; Xianglin Yuan; Feng Li
Journal:  Am J Transl Res       Date:  2015-11-15       Impact factor: 4.060

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