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艾克大鼠自发性肿瘤中结节性硬化症2基因座的等位基因缺失。

Allelic loss at the tuberous sclerosis 2 locus in spontaneous tumors in the Eker rat.

作者信息

Yeung R S, Xiao G H, Everitt J I, Jin F, Walker C L

机构信息

Division of Medical Science, Fox Chase Cancer Center, Philadelphia, PA 19111, USA.

出版信息

Mol Carcinog. 1995 Sep;14(1):28-36. doi: 10.1002/mc.2940140107.

Abstract

Somatic events leading to the inactivation of tumor suppressor genes often involve chromosomal alterations that can be detected as loss of heterozygosity (LOH). In the Eker rat, spontaneous tumors of the kidney, uterus, and spleen develop as a result of a germline mutation of the tuberous sclerosis 2 (Tsc2) gene. We examined the pattern and frequency of LOH at the predisposing locus in 77 primary tumors and cell lines to gain an understanding of the role of Tsc2 allelic loss in the pathogenesis of Eker-derived tumors. Although most renal and uterine tumors (primary and cell lines) displayed LOH, splenic hemangiosarcomas did not. Although the presence of normal tissue may account for some of this difference, the possibility exists that an alternative mechanism, such as subtle mutation or gene dosage effects, may be involved during splenic tumorigenesis. Northern analysis confirmed that LOH resulted in loss of the wild-type transcripts for the Tsc2 gene. Thus, the inactivation of both alleles plays an important role in renal and uterine tumor development, in keeping with Knudson's two-hit hypothesis. In addition, renal tumors that retained the wild-type allele also did not express the normal transcript, suggesting that the remaining Tsc2 alleles had acquired subtle mutations resulting in loss of gene function.

摘要

导致肿瘤抑制基因失活的体细胞事件通常涉及染色体改变,这种改变可被检测为杂合性缺失(LOH)。在艾克大鼠中,肾、子宫和脾脏的自发性肿瘤是由结节性硬化症2(Tsc2)基因的种系突变引起的。我们检查了77个原发性肿瘤和细胞系中易感位点的LOH模式和频率,以了解Tsc2等位基因缺失在艾克大鼠来源肿瘤发病机制中的作用。尽管大多数肾肿瘤和子宫肿瘤(原发性肿瘤和细胞系)显示出LOH,但脾脏血管肉瘤却没有。虽然正常组织的存在可能部分解释了这种差异,但也有可能存在其他机制,如微小突变或基因剂量效应,参与了脾脏肿瘤的发生过程。Northern分析证实,LOH导致Tsc2基因野生型转录本的缺失。因此,两个等位基因的失活在肾肿瘤和子宫肿瘤的发展中起着重要作用,这与克努森的双击假说相符。此外,保留野生型等位基因的肾肿瘤也不表达正常转录本,这表明剩余的Tsc2等位基因发生了微小突变,导致基因功能丧失。

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