Literature DB >> 12874033

Combined cyclin D1 overexpression and zinc deficiency disrupts cell cycle and accelerates mouse forestomach carcinogenesis.

Louise Y Y Fong1, Rita Mancini, Hiroshi Nakagawa, Anil K Rustgi, Kay Huebner.   

Abstract

Overexpression of cyclin D1 and disruption of cell cycle control in G(1) occur frequently in human esophageal cancer. Transgenic (TG) mice with cyclin D1 overexpression targeted to the oral-esophageal tissue by the EBV ED-L2 promoter showed increased severity in esophageal dysplasia without cancer development, after multiple doses of N-nitrosomethylbenzylamine (NMBA). Dietary zinc deficiency (ZD) in mice enhances cellular proliferation in esophagus/forestomach and susceptibility to NMBA-induced carcinogenesis. We investigated whether cyclin D1 overexpression in TG mice, together with ZD, might lead to unchecked cell proliferation and accelerated NMBA-induced tumorigenesis. Five-week-old TG and wild-type (WT) mice were fed a ZD- or -sufficient (ZS) diet, forming four groups: ZD:TG; ZS:TG; ZD:WT; and ZS:WT. After 4 weeks, animals were given a single intragastric NMBA dose and were sacrificed 25 and 77 days later. Without NMBA, cell proliferation was greatest in ZD:TG esophagus/forestomach, followed by ZD:WT, and then ZS:TG>/=ZS:WT. The high rate of cell proliferation was accompanied by overexpression of cell cycle progression and tumorigenesis biomarkers, including proliferating cell nuclear antigen, cyclin D1, cyclin-dependent kinase 4, p53, cytokeratin 14, epidermal growth factor receptor, and by a reduced rate of apoptosis. ZD substantially increased forestomach tumor incidence in TG mice: 85% of ZD:TG versus 14% of ZS:TG mice had forestomach tumors (P < 0.001), with progression to malignancy occurring only in ZD:TG tumors. Additionally, 14% of ZD:TG mice developed esophageal tumors and esophageal intestinal metaplasia at 77 days. Thus, cyclin D1 overexpression, in cooperation with ZD, decontrols cell proliferation, ensuring cell expansion, a prerequisite for cancer development.

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Year:  2003        PMID: 12874033

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  12 in total

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Review 2.  GI GEMs: genetically engineered mouse models of gastrointestinal disease.

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3.  Studies on Association Between Copper Excess, Zinc Deficiency and TP53 Mutations in Esophageal Squamous Cell Carcinoma From Kashmir Valley, India-A High Risk Area.

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Journal:  Int J Health Sci (Qassim)       Date:  2007-01

4.  Esophageal cancer in kashmir (India): an enigma for researchers.

Authors:  M Muzaffar Mir; Nazir Ahmad Dar
Journal:  Int J Health Sci (Qassim)       Date:  2009-01

5.  Construction and Quantitative Evaluation of a Tissue-Specific Sleeping Beauty by EDL2-Specific Transposase Expression in Esophageal Squamous Carcinoma Cell Line KYSE-30.

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6.  Prevention of upper aerodigestive tract cancer in zinc-deficient rodents: inefficacy of genetic or pharmacological disruption of COX-2.

Authors:  Louise Y Y Fong; Yubao Jiang; Maurisa Riley; Xianglan Liu; Karl J Smalley; Denis C Guttridge; John L Farber
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7.  Regulation of zinc transporters by dietary flaxseed lignan in human breast cancer xenografts.

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Journal:  Mol Biol Rep       Date:  2007-09-05       Impact factor: 2.316

Review 8.  Zinc transporters and dysregulated channels in cancers.

Authors:  Zui Pan; Sangyong Choi; Halima Ouadid-Ahidouch; Jin-Ming Yang; John H Beattie; Irina Korichneva
Journal:  Front Biosci (Landmark Ed)       Date:  2017-01-01

9.  Demand for Zn2+ in acid-secreting gastric mucosa and its requirement for intracellular Ca2+.

Authors:  JingJing Liu; Jonathan E Kohler; Amy L Blass; Juliet A Moncaster; Anca Mocofanescu; Matthew A Marcus; Eleanor A Blakely; Kathleen A Bjornstad; Chitra Amarasiriwardena; Noel Casey; Lee E Goldstein; David I Soybel
Journal:  PLoS One       Date:  2011-06-15       Impact factor: 3.240

Review 10.  Esophageal Cancer: Insights From Mouse Models.

Authors:  Marie-Pier Tétreault
Journal:  Cancer Growth Metastasis       Date:  2015-08-16
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