Department of Medicine and Neurosurgery, David Geffen School of Medicine, University of California, Los Angeles, CA 90095, USA.
Proc Natl Acad Sci U S A. 2013 May 21;110(21):8555-60. doi: 10.1073/pnas.1306182110. Epub 2013 May 7.
Cushing disease (CD) is a life-threatening disorder attributed to excess pituitary tumor-derived adrenocorticotrophic hormone (ACTH) and adrenal steroid secretion caused by pituitary tumors. Whereas CD was first described in 1932, the underlying genetic basis driving tumor growth and ACTH secretion remains unsolved. Here, we show that testicular orphan nuclear receptor 4 (TR4, nuclear receptor subfamily 2, group C, member 2) is overexpressed in human corticotroph tumors as well as in human and mouse corticotroph tumor cell lines. Forced overexpression of TR4 in both human and murine tumor cells increased proopiomelanocortin transcription, ACTH secretion, cellular proliferation, and tumor invasion rates in vitro. Conversely, knockdown of TR4 expression reversed all phenotypes. Mechanistically, we show that TR4 transcriptionally activates proopiomelanocortin through binding of a direct repeat 1 response element in the promoter, and that this is enhanced by MAPK-mediated TR4 phosphorylation. In vivo, TR4 overexpression promotes murine corticotroph tumor growth as well as enhances ACTH and corticosterone production, whereas TR4 knockdown decreases circulating ACTH and corticosterone levels in mice harboring ACTH-secreting tumors. Our findings directly link TR4 to the etiology of corticotroph tumors, hormone secretion, and cell growth as well as identify it as a potential target in the treatment of CD.
库欣病(CD)是一种危及生命的疾病,归因于垂体肿瘤衍生的促肾上腺皮质激素(ACTH)过多和由垂体肿瘤引起的肾上腺类固醇分泌。虽然 CD 于 1932 年首次被描述,但驱动肿瘤生长和 ACTH 分泌的潜在遗传基础仍未解决。在这里,我们表明,睾丸孤儿核受体 4(TR4,核受体亚家族 2,C 组,成员 2)在人类促皮质素肿瘤以及人类和小鼠促皮质素肿瘤细胞系中过度表达。在人和鼠肿瘤细胞中强制过表达 TR4 会增加前阿黑皮素原转录、ACTH 分泌、细胞增殖和体外肿瘤侵袭率。相反,敲低 TR4 的表达逆转了所有表型。从机制上讲,我们表明 TR4 通过结合启动子中的直接重复 1 反应元件转录激活前阿黑皮素原,并且这通过 MAPK 介导的 TR4 磷酸化增强。在体内,TR4 的过表达促进了鼠促皮质素肿瘤的生长以及增强了 ACTH 和皮质酮的产生,而 TR4 的敲低降低了携带 ACTH 分泌肿瘤的小鼠循环中的 ACTH 和皮质酮水平。我们的发现直接将 TR4 与促皮质素肿瘤的病因、激素分泌和细胞生长联系起来,并将其确定为治疗 CD 的潜在靶点。