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美国USF3基因种系复合杂合性多聚谷氨酰胺缺失可能与遗传性和散发性甲状腺上皮癌的易感性有关。

Germline compound heterozygous poly-glutamine deletion in USF3 may be involved in predisposition to heritable and sporadic epithelial thyroid carcinoma.

作者信息

Ni Ying, Seballos Spencer, Fletcher Benjamin, Romigh Todd, Yehia Lamis, Mester Jessica, Senter Leigha, Niazi Farshad, Saji Motoyasu, Ringel Matthew D, LaFramboise Thomas, Eng Charis

机构信息

Genomic Medicine Institute, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio, OH, USA.

Department of Genetics and Genome Sciences.

出版信息

Hum Mol Genet. 2017 Jan 15;26(2):243-257. doi: 10.1093/hmg/ddw382.

Abstract

Cowden syndrome (CS) is an autosomal dominant disorder that predisposes to breast, thyroid, and other epithelial cancers. Differentiated thyroid carcinoma (DTC), as one of the major component cancers of CS, is the fastest rising incident cancer in the USA, and the most familial of all solid tumours. To identify additional candidate genes of CS and potentially DTC, we analysed a multi-generation CS-like family with papillary thyroid cancer (PTC), applying a combined linkage-based and whole-genome sequencing strategy and identified an in-frame germline compound heterozygous deletion, p.[Gln1478del];[Gln1476-Gln1478del] in USF3 (previously known as KIAA2018). Among 90 unrelated CS/CS-like individuals, 29% were found to have p.[Gln1478del];[Gln1476-Gln1478del]. Of 497 TCGA PTC individuals, 138 (27%) were found to carry this germline compound deletion, with somatically decreased tumour USF3 expression. We demonstrate an increased migration phenotype along with enhanced epithelial-to-mesenchymal transition (EMT) signature after USF3 knockdown or USF3 p.[Gln1478del];[Gln1476-Gln1478del] overexpression, which sensitizes cells to the endoplasmic reticulum (ER) stress. Loss of USF3 function induced cell necrosis-like features and impaired respiratory capacity while providing a glutamine-dependent cell survival advantage, strongly suggests a metabolic survival and migration-favouring microenvironment for carcinogenesis. Therefore, USF3 may be involved in the predisposition of thyroid cancer. Importantly, the results that glutamine-dependent survival and sensitivity to ER stress in USF3-deficient cells provide avenues for therapeutic and adjunct preventive interventions for both sporadic cancer as well as cancer predisposition syndromes with similar mechanisms.

摘要

考登综合征(CS)是一种常染色体显性遗传病,易患乳腺癌、甲状腺癌和其他上皮性癌症。分化型甲状腺癌(DTC)作为CS的主要组成癌症之一,是美国发病率上升最快的癌症,也是所有实体瘤中家族性最强的。为了确定CS以及潜在的DTC的其他候选基因,我们分析了一个患有甲状腺乳头状癌(PTC)的多代CS样家族,采用基于连锁分析和全基因组测序的联合策略,在USF3(以前称为KIAA2018)中鉴定出一种框内种系复合杂合缺失,即p.[Gln1478del];[Gln1476-Gln1478del]。在90名无关的CS/CS样个体中,29%被发现携带p.[Gln1478del];[Gln1476-Gln1478del]。在497名TCGA PTC个体中,138名(27%)被发现携带这种种系复合缺失,且肿瘤中USF3表达在体细胞水平下降。我们证明,在敲低USF3或过表达USF3 p.[Gln1478del];[Gln1476-Gln1478del]后,细胞迁移表型增加,同时上皮-间质转化(EMT)特征增强,这使细胞对内质网(ER)应激敏感。USF3功能丧失诱导细胞出现坏死样特征并损害呼吸能力,同时提供谷氨酰胺依赖性的细胞存活优势,这强烈表明存在一种有利于致癌的代谢性存活和迁移的微环境。因此,USF3可能参与甲状腺癌的易感性。重要的是,USF3缺陷细胞中谷氨酰胺依赖性存活和对ER应激的敏感性这一结果为散发性癌症以及具有类似机制的癌症易感综合征的治疗和辅助预防干预提供了途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af4e/5351935/5c6455dcb811/ddw382f1.jpg

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