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Ovarian cancer stroma: pathophysiology and the roles in cancer development.卵巢癌间质:病理生理学及其在癌症发展中的作用。
Cancers (Basel). 2012 Jul 18;4(3):701-24. doi: 10.3390/cancers4030701.
2
GT198 Splice Variants Display Dominant-Negative Activities and Are Induced by Inactivating Mutations.GT198剪接变体表现出显性负性活性,并由失活突变诱导产生。
Genes Cancer. 2013 Jan;4(1-2):26-38. doi: 10.1177/1947601913486345.
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Inactivating Mutations in GT198 in Familial and Early-Onset Breast and Ovarian Cancers.家族性及早发性乳腺癌和卵巢癌中GT198的失活突变
Genes Cancer. 2013 Jan;4(1-2):15-25. doi: 10.1177/1947601913486344.
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CD133 as a biomarker for putative cancer stem cells in solid tumours: limitations, problems and challenges.CD133 作为实体瘤中肿瘤干细胞的生物标志物:局限性、问题和挑战。
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XX ovarian dysgenesis is caused by a PSMC3IP/HOP2 mutation that abolishes coactivation of estrogen-driven transcription.XX 卵巢发育不全是由 PSMC3IP/HOP2 突变引起的,该突变会使雌激素驱动的转录共激活作用丧失。
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Molecular pathogenesis and extraovarian origin of epithelial ovarian cancer--shifting the paradigm.上皮性卵巢癌的分子发病机制和卵巢外起源——改变模式。
Hum Pathol. 2011 Jul;42(7):918-31. doi: 10.1016/j.humpath.2011.03.003.
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Ovarian enzymatically active stromal cells can be a promoter of ovarian surface epithelial tumor.卵巢有酶活性的基质细胞可能是卵巢表面上皮肿瘤的促进因素。
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人卵巢癌基质中含有黄素化的卵泡膜细胞,这些细胞携带肿瘤抑制基因 GT198 突变。

Human ovarian cancer stroma contains luteinized theca cells harboring tumor suppressor gene GT198 mutations.

机构信息

From the Cancer Center and.

出版信息

J Biol Chem. 2013 Nov 15;288(46):33387-97. doi: 10.1074/jbc.M113.485581. Epub 2013 Oct 4.

DOI:10.1074/jbc.M113.485581
PMID:24097974
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3829185/
Abstract

Ovarian cancer is a highly lethal gynecological cancer, and its causes remain to be understood. Using a recently identified tumor suppressor gene, GT198 (PSMC3IP), as a unique marker, we searched for the identity of GT198 mutant cells in ovarian cancer. GT198 has germ line mutations in familial and early onset breast and ovarian cancers and recurrent somatic mutations in sporadic fallopian tube cancers. GT198 protein has been shown as a steroid hormone receptor coregulator and also as a crucial factor in DNA repair. In this study, using GT198 as a marker for microdissection, we find that ovarian tumor stromal cells harboring GT198 mutations are present in various types of ovarian cancer including high and low grade serous, endometrioid, mucinous, clear cell, and granulosa cell carcinomas and in precursor lesions such as inclusion cysts. The mutant stromal cells consist of a luteinized theca cell lineage at various differentiation stages including CD133(+), CD44(+), and CD34(+) cells, although the vast majority of them are differentiated overexpressing steroidogenic enzyme CYP17, a theca cell-specific marker. In addition, wild type GT198 suppresses whereas mutant GT198 protein stimulates CYP17 expression. The chromatin-bound GT198 on the human CYP17 promoter is decreased by overexpressing mutant GT198 protein, implicating the loss of wild type suppression in mutant cells. Together, our results suggest that GT198 mutant luteinized theca cells overexpressing CYP17 are common in ovarian cancer stroma. Because first hit cancer gene mutations would specifically mark cancer-inducing cells, the identification of mutant luteinized theca cells may add crucial evidence in understanding the cause of human ovarian cancer.

摘要

卵巢癌是一种高致命性的妇科癌症,其病因仍有待了解。我们使用最近鉴定的肿瘤抑制基因 GT198(PSMC3IP)作为独特的标志物,来寻找卵巢癌中 GT198 突变细胞的身份。GT198 在家族性和早发性乳腺癌和卵巢癌以及散发性输卵管癌中存在种系突变,在散发性输卵管癌中存在反复发生的体细胞突变。GT198 蛋白已被证明是类固醇激素受体共调节剂,也是 DNA 修复的关键因素。在这项研究中,我们使用 GT198 作为微切割的标志物,发现携带 GT198 突变的卵巢肿瘤基质细胞存在于各种类型的卵巢癌中,包括高级别和低级别浆液性、子宫内膜样、黏液性、透明细胞和颗粒细胞瘤以及前体病变,如包涵囊肿。突变的基质细胞由各种分化阶段的黄体化的卵泡膜细胞谱系组成,包括 CD133(+)、CD44(+)和 CD34(+)细胞,尽管它们中的绝大多数是分化过度表达类固醇生成酶 CYP17 的细胞,CYP17 是卵泡膜细胞特异性标记物。此外,野生型 GT198 抑制而突变型 GT198 蛋白刺激 CYP17 的表达。在人类 CYP17 启动子上,结合在染色质上的 GT198 由于过表达突变型 GT198 蛋白而减少,暗示在突变细胞中野生型抑制的丧失。总之,我们的结果表明,卵巢癌基质中过度表达 CYP17 的 GT198 突变黄体化卵泡膜细胞很常见。由于首次打击癌基因的突变会特异性地标记致癌细胞,因此突变黄体化卵泡膜细胞的鉴定可能为理解人类卵巢癌的病因提供重要证据。