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A nuclear factor, ASC-2, as a cancer-amplified transcriptional coactivator essential for ligand-dependent transactivation by nuclear receptors in vivo

  • Soo Kyung Lee
  • , Sarah L. Anzick
  • , Ji Eun Choi
  • , Lukas Bubendorf
  • , Xin Yuan Guan
  • , Yong Keun Jung
  • , Olli P. Kallioniemi
  • , Juha Kononen
  • , Jeffrey M. Trent
  • , David Azorsa
  • , Byung Hak Jhun
  • , Jae Hun Cheong
  • , Young Chul Lee
  • , Paul S. Meltzer
  • , Jae Woon Lee
  • National Institutes of Health
  • Pusan National University
  • Gwangju Institute of Science and Technology
  • Chonnam National University

Research output: Contribution to journalArticlepeer-review

190 Scopus citations

Abstract

Many transcription coactivators interact with nuclear receptors in a ligand- and C-terminal transactivation function (AF2)-dependent manner. We isolated a nuclear factor (designated ASC-2) with such properties by using the ligand-binding domain of retinoid X receptor as a bait in a yeast two- hybrid screening. ASC-2 also interacted with other nuclear receptors, including retinoic acid receptor, thyroid hormone receptor, estrogen receptor α, and glucocorticoid receptor, basal factors TFIIA and TBP, and transcription integrators CBP/p300 and SRC-1. In transient cotransfections, ASC-2, either alone or in conjunction with CBP/p300 and SRC-1, stimulated ligand-dependent transactivation by wild type nuclear receptors but not mutant receptors lacking the AF2 domain. Consistent with an idea that ASC-2 is essential for the nuclear receptor function in vivo, microinjection of anti-ASC-2 antibody abrogated the ligand-dependent transactivation of retinoic acid receptor, and this repression was fully relieved by coinjection of ASC-2-expression vector. Surprisingly, ASC-2 was identical to a gene previously identified during a search for genes amplified and overexpressed in breast and other human cancers. From these results, we concluded that ASC- 2 is a bona fide transcription coactivator molecule of nuclear receptors, and its altered expression may contribute to the development of cancers.

Original languageEnglish
Pages (from-to)34283-34293
Number of pages11
JournalJournal of Biological Chemistry
Volume274
Issue number48
DOIs
StatePublished - Nov 26 1999

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