4.5 Article

Regulation of Estrogen Receptor alpha N-Terminus Conformation and Function by Peptidyl Prolyl Isomerase Pin1

期刊

MOLECULAR AND CELLULAR BIOLOGY
卷 32, 期 2, 页码 445-457

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/MCB.06073-11

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资金

  1. NIH [U54 GM074901, P41 RR02301, P41 GM66326, CA159578, T32 GM08688, R01 GM56230]
  2. NIH/NCI [P30 CA014520-UWCCC]
  3. U.S. Army Medical Research and Materiel Command [W81XWH-07-1-0502]
  4. NIH Breast Cancer and the Environment Research Centers [U01 ES/CA012800]
  5. NATIONAL CANCER INSTITUTE [R01CA159578, P30CA014520] Funding Source: NIH RePORTER
  6. NATIONAL CENTER FOR RESEARCH RESOURCES [P41RR002301] Funding Source: NIH RePORTER
  7. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [U54GM074901, T32GM008688, R01GM056230, P41GM066326] Funding Source: NIH RePORTER

向作者/读者索取更多资源

Estrogen receptor alpha (ER alpha), a key driver of growth in the majority of breast cancers, contains an unstructured transactivation domain (AF1) in its N terminus that is a convergence point for growth factor and hormonal activation. This domain is controlled by phosphorylation, but how phosphorylation impacts AF1 structure and function is unclear. We found that serine 118 (S118) phosphorylation of the ER alpha AF1 region in response to estrogen (agonist), tamoxifen (antagonist), and growth factors results in recruitment of the peptidyl prolyl cis/trans isomerase Pin1. Phosphorylation of S118 is critical for Pin1 binding, and mutation of S118 to alanine prevents this association. Importantly, Pin1 isomerizes the serine118-proline119 bond from a cis to trans isomer, with a concomitant increase in AF1 transcriptional activity. Pin1 overexpression promotes ligand-independent and tamoxifen-inducible activity of ER alpha and growth of tamoxifen-resistant breast cancer cells. Pin1 expression correlates with proliferation in ER alpha-positive rat mammary tumors. These results establish phosphorylation-coupled proline isomerization as a mechanism modulating AF1 functional activity and provide insight into the role of a conformational switch in the functional regulation of the intrinsically disordered transactivation domain of ER alpha.

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