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肿瘤抑制因子TERE1(UBIAD1)异戊二烯基转移酶通过控制依赖配体的SXR靶基因程序,调节去势抵抗性前列腺癌中的高胆固醇表型。

The tumor suppressor TERE1 (UBIAD1) prenyltransferase regulates the elevated cholesterol phenotype in castration resistant prostate cancer by controlling a program of ligand dependent SXR target genes.

作者信息

Fredericks William J, Sepulveda Jorge, Lai Priti, Tomaszewski John E, Lin Ming-Fong, McGarvey Terry, Rauscher Frank J, Malkowicz S Bruce

机构信息

Department of Surgery, Division of Urology, University of Pennsylvania and Veterans Affairs Medical Center Philadelphia, Philadelphia, PA, USA.

出版信息

Oncotarget. 2013 Jul;4(7):1075-92. doi: 10.18632/oncotarget.1103.

Abstract

Castrate-Resistant Prostate Cancer (CRPC) is characterized by persistent androgen receptor-driven tumor growth in the apparent absence of systemic androgens. Current evidence suggests that CRPC cells can produce their own androgens from endogenous sterol precursors that act in an intracrine manner to stimulate tumor growth. The mechanisms by which CRPC cells become steroidogenic during tumor progression are not well defined. Herein we describe a novel link between the elevated cholesterol phenotype of CRPC and the TERE1 tumor suppressor protein, a prenyltransferase that synthesizes vitamin K-2, which is a potent endogenous ligand for the SXR nuclear hormone receptor. We show that 50% of primary and metastatic prostate cancer specimens exhibit a loss of TERE1 expression and we establish a correlation between TERE1 expression and cholesterol in the LnCaP-C81 steroidogenic cell model of the CRPC. LnCaP-C81 cells also lack TERE1 protein, and show elevated cholesterol synthetic rates, higher steady state levels of cholesterol, and increased expression of enzymes in the de novo cholesterol biosynthetic pathways than the non-steroidogenic prostate cancer cells. C81 cells also show decreased expression of the SXR nuclear hormone receptor and a panel of directly regulated SXR target genes that govern cholesterol efflux and steroid catabolism. Thus, a combination of increased synthesis, along with decreased efflux and catabolism likely underlies the CRPC phenotype: SXR might coordinately regulate this phenotype. Moreover, TERE1 controls synthesis of vitamin K-2, which is a potent endogenous ligand for SXR activation, strongly suggesting a link between TERE1 levels, K-2 synthesis and SXR target gene regulation. We demonstrate that following ectopic TERE1 expression or induction of endogenous TERE1, the elevated cholesterol levels in C81 cells are reduced. Moreover, reconstitution of TERE1 expression in C81 cells reactivates SXR and switches on a suite of SXR target genes that coordinately promote both cholesterol efflux and androgen catabolism. Thus, loss of TERE1 during tumor progression reduces K-2 levels resulting in reduced transcription of SXR target genes. We propose that TERE1 controls the CPRC phenotype by regulating the endogenous levels of Vitamin K-2 and hence the transcriptional control of a suite of steroidogenic genes via the SXR receptor. These data implicate the TERE1 protein as a previously unrecognized link affecting cholesterol and androgen accumulation that could govern acquisition of the CRPC phenotype.

摘要

去势抵抗性前列腺癌(CRPC)的特征是在明显缺乏全身性雄激素的情况下,雄激素受体驱动肿瘤持续生长。目前的证据表明,CRPC细胞可以从内源性甾醇前体产生自身的雄激素,这些雄激素以内分泌方式作用于刺激肿瘤生长。CRPC细胞在肿瘤进展过程中成为类固醇生成细胞的机制尚未明确。在此,我们描述了CRPC升高的胆固醇表型与TERE1肿瘤抑制蛋白之间的一种新联系,TERE1是一种合成维生素K-2的异戊二烯基转移酶,维生素K-2是SXR核激素受体的一种强效内源性配体。我们发现50%的原发性和转移性前列腺癌标本显示TERE1表达缺失,并且我们在CRPC的LnCaP-C81类固醇生成细胞模型中建立了TERE1表达与胆固醇之间的相关性。LnCaP-C81细胞也缺乏TERE1蛋白,并且与非类固醇生成性前列腺癌细胞相比,显示出升高的胆固醇合成速率、更高的胆固醇稳态水平以及从头胆固醇生物合成途径中酶的表达增加。C81细胞还显示SXR核激素受体以及一组控制胆固醇流出和类固醇分解代谢的直接受调控的SXR靶基因的表达降低。因此,合成增加以及流出和分解代谢减少的组合可能是CRPC表型的基础:SXR可能协同调节这种表型。此外,TERE1控制维生素K-2的合成,维生素K-2是SXR激活的一种强效内源性配体,强烈暗示了TERE1水平、K-2合成与SXR靶基因调控之间的联系。我们证明,在异位表达TERE1或诱导内源性TERE1后,C81细胞中升高的胆固醇水平降低。此外,在C81细胞中重建TERE1表达可重新激活SXR并开启一组SXR靶基因,这些基因协同促进胆固醇流出和雄激素分解代谢。因此,肿瘤进展过程中TERE1的缺失会降低K-2水平,导致SXR靶基因的转录减少。我们提出,TERE1通过调节维生素K-2的内源性水平,从而通过SXR受体对一组类固醇生成基因进行转录控制,来控制CPRC表型。这些数据表明TERE1蛋白是影响胆固醇和雄激素积累的一个先前未被认识的环节,可能决定CRPC表型的获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4636/3759667/8d156298e42c/oncotarget-04-1075-g001.jpg

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