Anti-estrogen resistance is a major clinical problem in the treatment of breast cancer. In this study, fluorescence resonance energy transfer (FRET) analysis, a rapid and direct way to monitor conformational changes of estrogen receptor alpha (ERalpha) upon anti-estrogen binding, was used to characterize resistance to anti-estrogens. Nine different anti-estrogens all induced a rapid FRET response within minutes after the compounds have liganded to ERalpha in live cells, corresponding to an inactive conformation of the ERalpha. Phosphorylation of Ser(305) and/or Ser(236) of ERalpha by protein kinase A (PKA) and of Ser(118) by mitogen-activated protein kinase (MAPK) influenced the FRET response differently for the various anti-estrogens. PKA and MAPK are both associated with resistance to anti-estrogens in breast cancer patients. Their respective actions can result in seven different combinations of phospho-modifications in ERalpha where the FRET effects of particular anti-estrogen(s) are nullified. The FRET response provided information on the activity of ERalpha under the various anti-estrogen conditions as measured in a traditional reporter assay. Tamoxifen and EM-652 were the most sensitive to kinase activities, whereas ICI-182,780 (Fulvestrant) and ICI-164,384 were the most stringent. The different responses of anti-estrogens to the various combinations of phospho-modifications in ERalpha elucidate why certain anti-estrogens are more prone than others to develop resistance. These data provide new insights into the mechanism of action of anti-hormones and are critical for selection of the correct individual patient-based endocrine therapy in breast cancer.

译文

:抗雌激素耐药性是治疗乳腺癌的主要临床问题。在这项研究中,荧光共振能量转移(FRET)分析是一种监测抗雌激素结合后雌激素受体α(ERalpha)构象变化的快速直接方法,用于表征抗雌激素的耐药性。化合物在活细胞中与ERalpha配位后数分钟内,九种不同的抗雌激素都诱导了快速FRET反应,这对应于ERalpha的非活性构象。蛋白激酶A(PKA)对ERalpha的Ser(305)和/或Ser(236)进行磷酸化,丝裂原激活的蛋白激酶(MAPK)对Ser(118)进行磷酸化,对各种抗雌激素的FRET反应产生了不同的影响。 PKA和MAPK均与乳腺癌患者对抗雌激素的耐药性有关。它们各自的作用可导致ERalpha中七种不同的磷酸修饰组合,其中特定抗雌激素的FRET作用无效。 FRET响应提供了在传统的报告基因检测法中测得的各种抗雌激素条件下ERalpha活性的信息。他莫昔芬和EM-652对激酶活性最敏感,而ICI-182,780(Fulvestrant)和ICI-164,384最严格。抗雌激素对ERalpha中磷酸修饰的各种组合的不同反应阐明了为什么某些抗雌激素比其他抗雌激素更容易产生耐药性的原因。这些数据为抗激素的作用机理提供了新的见识,对于选择正确的基于患者的基于个体的内分泌疗法至关重要。

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