Literature DB >> 7476978

Estradiol and phorbol ester cause phosphorylation of serine 118 in the human estrogen receptor.

P B Joel1, A M Traish, D A Lannigan.   

Abstract

Serine 118 is definitively identified as a major site of phosphorylation in the human estrogen receptor expressed in COS-1 cells treated with estradiol or phorbol ester. At least 30% of the estrogen receptor appears to be phosphorylated on serine 118 after treatment with estradiol or phorbol ester. Human estrogen receptor was expressed in COS-1 cells and labeled in vivo with [32P]orthophosphate in the presence of estradiol or phorbol ester. Immunopurified receptor was digested with cyanogen bromide. The most heavily labeled peptide (7 kilodaltons) was identified as amino acids 110-174 by microsequencing. Manual Edman degradation released a major portion of the 32P-label in the peptide at serine 118. A mutant with serine 118 replaced by alanine (S118A) had 80% less 32P-label in the 7 kilodalton peptide. Estrogen receptor labeled in vivo with [32P]-orthophosphate in the presence of estradiol or phorbol ester migrates electrophoretically as a doublet. The major difference between the bands is phosphorylation of serine 118 in the upshifted band. The mutant S118A does not show an upshifted band. Labeling of the estrogen receptor with [35S]methionine indicates that > or = 30% of the receptor is upshifted and suggests that > or = 30% of the receptor is phosphorylated on serine 118.

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Year:  1995        PMID: 7476978     DOI: 10.1210/mend.9.8.7476978

Source DB:  PubMed          Journal:  Mol Endocrinol        ISSN: 0888-8809


  30 in total

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3.  Endometrial Cancers With Activating KRas Mutations Have Activated Estrogen Signaling and Paradoxical Response to MEK Inhibition.

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4.  Distribution and posttranslational modification of synaptic ERα in the adult female rat hippocampus.

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8.  Activation of the unliganded estrogen receptor by EGF involves the MAP kinase pathway and direct phosphorylation.

Authors:  G Bunone; P A Briand; R J Miksicek; D Picard
Journal:  EMBO J       Date:  1996-05-01       Impact factor: 11.598

9.  Interaction of the double-strand break repair kinase DNA-PK and estrogen receptor-alpha.

Authors:  Senad Medunjanin; Sönke Weinert; Alexander Schmeisser; Doris Mayer; Ruediger C Braun-Dullaeus
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10.  Extracellular signal-regulated kinase 7, a regulator of hormone-dependent estrogen receptor destruction.

Authors:  Lorin M Henrich; Jeffrey A Smith; Danielle Kitt; Timothy M Errington; Binh Nguyen; Abdulmaged M Traish; Deborah A Lannigan
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