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散发性甲状旁腺腺瘤中细胞周期蛋白依赖性激酶抑制剂基因 CDKN1A、CDKN2B 和 CDKN2C 的种系和体细胞突变。

Germline and somatic mutations in cyclin-dependent kinase inhibitor genes CDKN1A, CDKN2B, and CDKN2C in sporadic parathyroid adenomas.

机构信息

Center for Molecular Medicine and Division of Endocrinology and Metabolism, University of Connecticut School of Medicine, Farmington, CT 06030, USA.

出版信息

Horm Cancer. 2013 Oct;4(5):301-7. doi: 10.1007/s12672-013-0147-9. Epub 2013 May 29.

Abstract

The molecular pathogenesis of sporadic parathyroid adenomas is incompletely understood. The possible role of cyclin-dependent kinase inhibitor (CDKI) genes was raised by recognition of cyclin D1 as a parathyroid oncogene, identification of rare germline mutations in CDKI genes in patients with multiple endocrine neoplasia type 1; that in rodents, mutation in Cdkn1b caused parathyroid tumors; and subsequently through identification of rare predisposing germline sequence variants and somatic mutation of CDKN1B, encoding p27(kip1), in sporadic human parathyroid adenoma. We therefore sought to determine whether mutations/variants in the other six CDKI genes CDKN1A, CDKN1C, CDKN2A, CDKN2B, CDKN2C, and CDKN2D, encoding p21, p57, p14(ARF)/p16, p15, p18, and p19, respectively, contribute to the development of typical parathyroid adenomas. In a series of 85 sporadic parathyroid adenomas, direct DNA sequencing identified alterations in five adenomas (6 %): Two contained distinct heterozygous changes in CDKN1A, one germline and one of undetermined germline status; one had a CDKN2B germline alteration, accompanied by loss of the normal allele in the tumor (LOH); two had variants of CDKN2C, one somatic and one germline with LOH. Abnormalities of three of the mutant proteins were readily demonstrable in vitro. Thus, germline mutations/rare variants in CDKN1A, CDKN2B, and CDKN2C likely contribute to the development of a significant subgroup of common sporadic parathyroid adenomas, and somatic mutation in CDKN2C further suggests a direct role for CDKI alteration in conferring a selective growth advantage to parathyroid cells, providing novel support for the concept that multiple CDKIs can play primary roles in human neoplasia.

摘要

散发性甲状旁腺腺瘤的分子发病机制尚不完全清楚。人们认识到 cyclin D1 是甲状旁腺癌基因,在多发性内分泌肿瘤 1 型患者中发现了 CDKI 基因的罕见种系突变,在啮齿动物中,Cdkn1b 的突变导致甲状旁腺肿瘤,随后通过鉴定散发性人类甲状旁腺腺瘤中 CDKN1B 基因的罕见易感种系序列变异和体细胞突变,鉴定出编码 p27(kip1)的 CDKI 基因。因此,我们试图确定其他六个 CDKI 基因 CDKN1A、CDKN1C、CDKN2A、CDKN2B、CDKN2C 和 CDKN2D 中的突变/变异是否导致典型甲状旁腺腺瘤的发生。在 85 例散发性甲状旁腺腺瘤中,直接 DNA 测序鉴定出 5 例腺瘤(6%)存在改变:2 例含有 CDKN1A 的明显杂合性改变,1 例为种系改变,1 例为不确定的种系改变;1 例存在 CDKN2B 的种系改变,肿瘤中伴有正常等位基因的缺失(LOH);2 例存在 CDKN2C 的变异,1 例为体细胞,1 例为种系,伴有 LOH。三种突变蛋白的异常在体外很容易被证明。因此,CDKN1A、CDKN2B 和 CDKN2C 的种系突变/罕见变异可能导致显著亚群的常见散发性甲状旁腺腺瘤的发生,CDKN2C 的体细胞突变进一步表明 CDKI 改变直接赋予甲状旁腺细胞选择性生长优势,为多个 CDKIs 可在人类肿瘤中发挥主要作用的概念提供了新的支持。

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