Disruption of cyclin D1 nuclear export and proteolysis accelerates mammary carcinogenesis
Author(s) -
Douglas I. Lin,
Matthew D. Lessie,
Andrew B. Gladden,
Craig H. Bassing,
KayUwe Wagner,
J. Alan Diehl
Publication year - 2007
Publication title -
oncogene
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.395
H-Index - 342
eISSN - 1476-5594
pISSN - 0950-9232
DOI - 10.1038/sj.onc.1210738
Subject(s) - cyclin d1 , biology , cyclin d , cyclin a2 , cancer research , carcinogenesis , mammary gland , proteolysis , cyclin , cyclin b , estrogen receptor , cell cycle , cancer , microbiology and biotechnology , breast cancer , genetics , biochemistry , enzyme
Cyclin D1 levels are maintained at steady state by phosphorylation-dependent nuclear export and polyubiquitination by SCF(FBX4-alphaB crystallin). Inhibition of cyclin D1 proteolysis has been implicated as a causative factor leading to its overexpression in breast and esophageal carcinomas; however, the contribution of stable cyclin D1 to the genesis of such carcinomas has not been evaluated. We therefore generated transgenic mice wherein expression of either wild-type or a stable cyclin D1 allele (D1T286A) is regulated by MMTV-LTR. MMTV-D1T286A mice developed mammary adenocarcinomas at an increased rate relative to MMTV-D1 mice. Similar to human cancers that overexpress cyclin D1, D1T286A tumors were estrogen receptor-positive and exhibited estrogen-dependent growth. Collectively, these results suggest that temporal control of cyclin D1 subcellular localization and proteolysis is critical for maintenance of homeostasis within the mammary epithelium.
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