The p15INK4b/p16INK4a/RB1 Pathway Is Frequently Deregulated in Human Pituitary Adenomas

A. Ogino, A. Yoshino, Y. Katayama, Takao Watanabe, T. Ota, C. Komine, Takakazu Yokoyama, T. Fukushima
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引用次数: 59

Abstract

Pituitary adenomas are common benign intracranial neoplasms. However, their tumorigenesis is not yet clearly defined. Inactivation of genes involved in the negative cell-cycle regulatory p15INK4b-p16INK4a-cyclin D/CDK4-RB1-mediated pathway (RB1 pathway) is one of the most common and important mechanisms in the growth advantage of tumor cells. Recently, much attention has been focused on the importance of alternative mechanisms of gene inactivation, particularly promoter hypermethylation in the transcriptional silencing of such tumor-suppressor genes. Based on the rare occurrence of inactivation by gene mutations and deletions of the RB1 pathway in pituitary adenomas, we investigated the deregulation of the RB1 pathway in 42 sporadic human pituitary adenomas, especially focusing on the methylation status of this pathway as determined by a methylation-specific polymerase chain reaction assay. Homozygous deletion of the p15INK4b or p16INK4a gene was detected in one adenoma each. Amplification of the CDK4 gene was not apparent in any of the pituitary adenomas presently examined. Promoter hypermethylation of the p15INK4b, p16INK4a, and RB1 genes was detected in 15 (35.7%), 30 (71.4%), and 12 (28.6%) of the adenomas, respectively. Promoter hypermethylation of the p15INK4b gene coincided with p16INK4a alteration and/or RB1 methylation, whereas p16INK4a and RB1 methylations tended to be mutually exclusive (p = 0.019). Thus, the vast majority of the adenomas (38 of 42, 90.5%) displayed alterations of the RB1 pathway. None of the clinicopathologic features, including the proliferation cell index, was significantly correlated with any particular methylation status. Our results suggest that inactivation of the RB1 pathway may play a causal role in pituitary tumorigenesis, with hypermethylation of the p16INK4a gene being the most common deregulation, and further provide evidence that RB1 and p16INK4a methylations tend to be mutually exclusive but occasionally coincide with p15INK4b methylation.
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p15INK4b/p16INK4a/RB1通路在人垂体腺瘤中经常失调
垂体腺瘤是常见的良性颅内肿瘤。然而,他们的肿瘤发生尚未明确定义。参与细胞周期负调控p15INK4b-p16INK4a-cyclin D/ cdk4 -RB1介导通路(RB1通路)的基因失活是肿瘤细胞生长优势最常见和最重要的机制之一。最近,人们越来越关注基因失活的其他机制,特别是启动子超甲基化在这些肿瘤抑制基因的转录沉默中的重要性。基于RB1通路在垂体腺瘤中罕见的基因突变和缺失导致的失活,我们研究了42例散发性人垂体腺瘤中RB1通路的失活,特别是通过甲基化特异性聚合酶链反应测定该通路的甲基化状态。p15INK4b或p16INK4a基因的纯合子缺失分别在一个腺瘤中检测到。CDK4基因扩增在目前检查的任何垂体腺瘤中都不明显。在15例(35.7%)、30例(71.4%)和12例(28.6%)腺瘤中分别检测到p15INK4b、p16INK4a和RB1基因的启动子超甲基化。p15INK4b基因的启动子超甲基化与p16INK4a改变和/或RB1甲基化相一致,而p16INK4a和RB1甲基化倾向于相互排斥(p = 0.019)。因此,绝大多数腺瘤(42例中的38例,90.5%)显示RB1通路的改变。没有任何临床病理特征,包括增殖细胞指数,与任何特定的甲基化状态显著相关。我们的研究结果表明,RB1通路的失活可能在垂体肿瘤发生中起因果作用,p16INK4a基因的高甲基化是最常见的解除管制,并进一步提供证据表明RB1和p16INK4a甲基化倾向于相互排斥,但偶尔与p15INK4b甲基化一致。
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