Boldog F, Gemmill R M, West J, Robinson M, Robinson L, Li E, Roche J, Todd S, Waggoner B, Lundstrom R, Jacobson J, Mullokandov M R, Klinger H, Drabkin H A
Division of Medical Oncology, University of Colorado Health Sciences Center, Denver 80262, USA.
Hum Mol Genet. 1997 Feb;6(2):193-203. doi: 10.1093/hmg/6.2.193.
Loss of heterozygosity (LOH) involving 3p occurs in many carcinomas but is complicated by the identification of four distinct homozygous deletion regions. One putative target, 3p14.2, contains the common fragile site, FRA3B, a hereditary renal carcinoma-associated 3;8 translocation and the candidate tumor suppressor gene, FHIT. Using a approximately 300 kb comsid/lambda contig, we identified homozygous deletions in cervix, breast, lung and colorectal carcinoma cell lines. The smallest deletion (CC19) was shown not to involve FHIT coding exons and no DNA sequence alterations were present in the transcript. We also detected discontinuous deletions as well as deletions in non-tumor DNAs, suggesting that FHIT is not a selective target. Further, we demonstrate that some reported FHIT aberrations represent normal splicing variation. DNA sequence analysis of 110 kb demonstrated that the region is high in A-T content, LINEs and MER repeats, whereas Alu elements are reduced. We note an intriguing similarity in repeat sequence composition between FRA3B and a 152 kb segment from the Fragile-X region. We also identified similarity between a FRA3B segment and a small polydispersed circular DNA. In contrast to the selective loss of a tumor suppressor gene, we propose an alternative hypothesis, that some putative targets including FRA3B may undergo loss as a consequence of genomic instability. This instability is not due to DNA mismatch repair deficiency, but may correlate in part with p53 inactivation.
3p杂合性缺失(LOH)在许多癌症中都有发生,但由于存在四个不同的纯合缺失区域,情况变得复杂。一个假定的靶点3p14.2包含常见脆性位点FRA3B、一种遗传性肾癌相关的3;8易位以及候选肿瘤抑制基因FHIT。利用一个约300kb的黏粒/λ连续克隆系,我们在子宫颈癌、乳腺癌、肺癌和结肠直肠癌细胞系中鉴定出了纯合缺失。最小的缺失(CC19)被证明不涉及FHIT编码外显子,并且转录本中不存在DNA序列改变。我们还检测到了不连续缺失以及非肿瘤DNA中的缺失,这表明FHIT不是一个选择性靶点。此外,我们证明一些报道的FHIT异常代表正常的剪接变异。对110kb的DNA序列分析表明,该区域富含A-T含量、长散在核元件(LINEs)和MER重复序列,而Alu元件减少。我们注意到FRA3B与脆性X区域的一个152kb片段之间在重复序列组成上存在有趣的相似性。我们还鉴定出FRA3B片段与一个小的多分散环状DNA之间的相似性。与肿瘤抑制基因的选择性缺失不同,我们提出了另一种假说,即包括FRA3B在内的一些假定靶点可能由于基因组不稳定而发生缺失。这种不稳定性不是由于DNA错配修复缺陷引起的,但可能部分与p53失活相关。