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3p14.2处常见脆性位点内不稳定序列的鉴定:对肿瘤中3p14.2处脆性组氨酸三联体基因/常见脆性位点内缺失机制的启示

Identification of unstable sequences within the common fragile site at 3p14.2: implications for the mechanism of deletions within fragile histidine triad gene/common fragile site at 3p14.2 in tumors.

作者信息

Corbin Shantel, Neilly Mary E, Espinosa Rafael, Davis Elizabeth M, McKeithan Timothy W, Le Beau Michelle M

机构信息

Section of Hematology/Oncology, and the Cancer Research Center, The University of Chicago, Illinois 60637, USA.

出版信息

Cancer Res. 2002 Jun 15;62(12):3477-84.

Abstract

The FRA3B, at 3p14.2, lies within the fragile histidine triad (FHIT) gene and is the most highly expressed of the common fragile sites observed when DNA replication is perturbed by aphidicolin. Common fragile sites are highly unstable regions of the genome. Large intragenic deletions within FHIT, localized within the FRA3B sequences, have been identified in a variety of tumor cells. To characterize the FRA3B deletions in tumor cells and identify FRA3B sequences that are required for fragile site induction, we used microcell-mediated chromosome transfer to isolate hybrid cell clones that retain chromosome 3 homologues with various deletions within FRA3B. Detailed molecular mapping of the FHIT/FRA3B locus in the resultant hybrid cells revealed a complex pattern of instability within FRA3B. Each tumor cell line contained multiple chromosome 3 homologues with variable deletion patterns, often with discontinuous deletions, suggesting that the process of breakage and repair within FRA3B is an ongoing one. By comparing the approximate location of the breakpoints in the hybrid clones, we identified 11 recurring breakpoint/repair regions within the FRA3B. A comparison of the frequency of breaks/gaps within FRA3B in the hybrid clones with various deletions of FRA3B sequences revealed that the loss of FRA3B sequences does not reduce the overall rate of breakage and instability within the remaining FRA3B sequences. The majority of breaks occurred in the proximal portion of the FRA3B, in a 300-kb interval between exon 4 and the proximal 50 kb of intron 5. Our observations suggest that there is no single sequence within the FRA3B that influences breakage or recombination within this region; however, we cannot rule out the presence of multiple "hot spots" within the FHIT/FRA3B locus. Together, the results suggest that factors other than the DNA sequence per se are responsible for the formation of DNA breaks/gaps.

摘要

位于3p14.2的FRA3B位于脆性组氨酸三联体(FHIT)基因内,是在阿非科林干扰DNA复制时观察到的常见脆性位点中表达最高的。常见脆性位点是基因组中高度不稳定的区域。在多种肿瘤细胞中已鉴定出FHIT内位于FRA3B序列内的大型基因内缺失。为了表征肿瘤细胞中的FRA3B缺失并鉴定脆性位点诱导所需的FRA3B序列,我们使用微细胞介导的染色体转移来分离保留3号染色体同源物且FRA3B内有各种缺失的杂交细胞克隆。对所得杂交细胞中FHIT/FRA3B基因座的详细分子图谱分析揭示了FRA3B内复杂的不稳定模式。每个肿瘤细胞系都包含多个具有可变缺失模式的3号染色体同源物,通常具有不连续缺失,这表明FRA3B内的断裂和修复过程是一个持续进行的过程。通过比较杂交克隆中断点的大致位置,我们在FRA3B内鉴定出11个反复出现的断点/修复区域。对具有FRA3B序列各种缺失的杂交克隆中FRA3B内断裂/间隙频率的比较表明,FRA3B序列的缺失不会降低其余FRA3B序列内的总体断裂和不稳定率。大多数断裂发生在FRA3B的近端部分,在第4外显子和第5内含子近端50 kb之间的300 kb区间内。我们的观察结果表明,FRA3B内没有单一序列影响该区域内的值断裂或重组;然而,我们不能排除FHIT/FRA3B基因座内存在多个“热点”。总之,结果表明,除了DNA序列本身之外,其他因素也导致了DNA断裂/间隙的形成。

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