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散发性垂体瘤中MEN1基因的序列分析及转录表达

Sequence analysis and transcript expression of the MEN1 gene in sporadic pituitary tumours.

作者信息

Farrell W E, Simpson D J, Bicknell J, Magnay J L, Kyrodimou E, Thakker R V, Clayton R N

机构信息

Centre for Cell and Molecular Medicine, University of Keele, North Staffs Hospital, Stoke on Trent, UK.

出版信息

Br J Cancer. 1999 Apr;80(1-2):44-50. doi: 10.1038/sj.bjc.6690319.

Abstract

The majority of pituitary tumours are monoclonal in origin and arise sporadically or occasionally as part of multiple endocrine neoplasia type 1 (MEN1). Whilst a multi-step aetiology involving both oncogenes and tumour suppressor genes has been proposed for their development, the target(s) of these changes are less clearly defined. Both familial and sporadic pituitary tumours have been shown to harbour allelic deletion on 11q13, which is the location of the recently cloned MEN1 gene. We investigated 23 sporadic pituitary tumours previously shown to harbour allelic deletion on 11q13 with the marker PYGM centromeric and within 50 kb of the MEN1 locus. In addition, the use of intragenic polymorphisms in exon 9 and at D11S4946, and of telomeric loci at D11S4940 and D11S4936, revealed that five of 20 tumours had loss of heterozygosity (LOH) telomeric to the menin gene. However, the overall pattern of loss in informative cases was indicative of non-contiguous deletion that brackets the menin gene. Sequence analysis of all MEN1 coding exons and flanking intronic sequence, in tumours and matched patient leucocyte DNA, did not reveal mutation(s) in any of the 23 tumours studied. A benign polymorphism in exon 9 was encountered at the expected frequency, and in seven patients heterozygous for the polymorphism the tumour showed retention of both copies of the menin gene. Reverse transcription polymerase chain reaction analysis of ten evaluable tumours and four normal pituitaries revealed the presence of the menin transcript. Whilst these findings suggest that gene silencing is unlikely to be mechanistic in sporadic pituitary tumorigenesis, they do not exclude changes in the level or stability of the transcript or translation to mature protein. Our study would support and extend very recent reports of a limited role for mutations in the MEN1 gene in sporadic pituitary tumours. Alternatively, these findings may point to an, as yet, unidentified tumour suppressor gene in this region.

摘要

大多数垂体肿瘤起源于单克隆,可散发出现,或偶尔作为1型多发性内分泌肿瘤(MEN1)的一部分出现。虽然有人提出其发生涉及癌基因和肿瘤抑制基因的多步骤病因,但这些变化的靶点尚不清楚。家族性和散发性垂体肿瘤均显示在11q13存在等位基因缺失,而11q13正是最近克隆的MEN1基因的位置。我们用着丝粒标记PYGM以及在MEN1基因座50 kb范围内,对先前显示在11q13存在等位基因缺失的23例散发性垂体肿瘤进行了研究。此外,利用外显子9和D11S4946处的基因内多态性,以及D11S4940和D11S4936处的端粒位点,发现20例肿瘤中有5例在脑膜瘤基因端粒处存在杂合性缺失(LOH)。然而,在信息充分的病例中,总体缺失模式表明存在围绕脑膜瘤基因的非连续缺失。对肿瘤及匹配的患者白细胞DNA中所有MEN1编码外显子和侧翼内含子序列进行序列分析,在所研究的23例肿瘤中均未发现突变。外显子9中出现了预期频率的良性多态性,在7例该多态性杂合的患者中,肿瘤显示脑膜瘤基因的两个拷贝均保留。对10例可评估肿瘤和4例正常垂体进行逆转录聚合酶链反应分析,发现存在脑膜瘤转录本。虽然这些发现表明基因沉默不太可能是散发性垂体肿瘤发生的机制,但它们并不排除转录本水平或稳定性的变化或向成熟蛋白的翻译过程中的变化。我们的研究将支持并扩展最近关于MEN1基因在散发性垂体肿瘤中作用有限的报道。或者,这些发现可能指向该区域一个尚未确定的肿瘤抑制基因。

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