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人类染色体3p21.3上630kb的肺癌纯合缺失区域:驻留候选肿瘤抑制基因的鉴定与评估。国际肺癌染色体3p21.3肿瘤抑制基因联盟。

The 630-kb lung cancer homozygous deletion region on human chromosome 3p21.3: identification and evaluation of the resident candidate tumor suppressor genes. The International Lung Cancer Chromosome 3p21.3 Tumor Suppressor Gene Consortium.

作者信息

Lerman M I, Minna J D

机构信息

Laboratory of Immanobiology, National Cancer Institute, Frederick Cancer Research and Development Center, Maryland 21702, USA.

出版信息

Cancer Res. 2000 Nov 1;60(21):6116-33.

Abstract

We used overlapping and nested homozygous deletions, contig building, genomic sequencing, and physical and transcript mapping to further define a approximately 630-kb lung cancer homozygous deletion region harboring one or more tumor suppressor genes (TSGs) on chromosome 3p21.3. This location was identified through somatic genetic mapping in tumors, cancer cell lines, and premalignant lesions of the lung and breast, including the discovery of several homozygous deletions. The combination of molecular manual methods and computational predictions permitted us to detect, isolate, characterize, and annotate a set of 25 genes that likely constitute the complete set of protein-coding genes residing in this approximately 630-kb sequence. A subset of 19 of these genes was found within the deleted overlap region of approximately 370-kb. This region was further subdivided by a nesting 200-kb breast cancer homozygous deletion into two gene sets: 8 genes lying in the proximal approximately 120-kb segment and 11 genes lying in the distal approximately 250-kb segment. These 19 genes were analyzed extensively by computational methods and were tested by manual methods for loss of expression and mutations in lung cancers to identify candidate TSGs from within this group. Four genes showed loss-of-expression or reduced mRNA levels in non-small cell lung cancer (CACNA2D2/alpha2delta-2, SEMA3B [formerly SEMA(V), BLU, and HYAL1] or small cell lung cancer (SEMA3B, BLU, and HYAL1) cell lines. We found six of the genes to have two or more amino acid sequence-altering mutations including BLU, NPRL2/Gene21, FUS1, HYAL1, FUS2, and SEMA3B. However, none of the 19 genes tested for mutation showed a frequent (>10%) mutation rate in lung cancer samples. This led us to exclude several of the genes in the region as classical tumor suppressors for sporadic lung cancer. On the other hand, the putative lung cancer TSG in this location may either be inactivated by tumor-acquired promoter hypermethylation or belong to the novel class of haploinsufficient genes that predispose to cancer in a hemizygous (+/-) state but do not show a second mutation in the remaining wild-type allele in the tumor. We discuss the data in the context of novel and classic cancer gene models as applied to lung carcinogenesis. Further functional testing of the critical genes by gene transfer and gene disruption strategies should permit the identification of the putative lung cancer TSG(s), LUCA, Analysis of the approximately 630-kb sequence also provides an opportunity to probe and understand the genomic structure, evolution, and functional organization of this relatively gene-rich region.

摘要

我们利用重叠和嵌套的纯合缺失、重叠群构建、基因组测序以及物理和转录图谱分析,进一步确定了一个位于3p21.3染色体上、大小约为630kb的肺癌纯合缺失区域,该区域含有一个或多个肿瘤抑制基因(TSG)。这个位置是通过对肺癌、乳腺癌的肿瘤、癌细胞系和癌前病变进行体细胞遗传图谱分析确定的,其中发现了几处纯合缺失。分子手工方法与计算预测相结合,使我们能够检测、分离、表征和注释一组25个基因,这些基因可能构成了这个约630kb序列中完整的蛋白质编码基因集。其中19个基因的一个子集位于约370kb的缺失重叠区域内。这个区域通过一个嵌套的200kb乳腺癌纯合缺失进一步细分为两个基因集:8个基因位于近端约120kb片段,11个基因位于远端约250kb片段。通过计算方法对这19个基因进行了广泛分析,并通过手工方法检测了它们在肺癌中的表达缺失和突变情况,以从该组中鉴定候选TSG。在非小细胞肺癌(CACNA2D2/α2δ-2、SEMA3B [原SEMA(V)]、BLU和HYAL1)或小细胞肺癌(SEMA3B、BLU和HYAL1)细胞系中,有4个基因显示表达缺失或mRNA水平降低。我们发现其中6个基因有两个或更多氨基酸序列改变突变,包括BLU、NPRL2/基因21、FUS1、HYAL1、FUS2和SEMA3B。然而,在检测的19个基因中,没有一个在肺癌样本中显示出高频率(>10%)的突变率。这使我们排除了该区域中的几个基因作为散发性肺癌的经典肿瘤抑制基因。另一方面,这个位置上假定的肺癌TSG可能通过肿瘤获得性启动子高甲基化而失活,或者属于一类新的单倍体不足基因,这类基因在半合子(+/-)状态下易患癌症,但在肿瘤中剩余的野生型等位基因中未显示第二次突变。我们在应用于肺癌发生的新型和经典癌症基因模型的背景下讨论了这些数据。通过基因转移和基因破坏策略对关键基因进行进一步的功能测试,应该能够鉴定出假定的肺癌TSG,LUCA。对约630kb序列的分析也提供了一个机会来探索和理解这个相对基因丰富区域的基因组结构、进化和功能组织。

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