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Characterization of amplification patterns and target genes on the short arm of chromosome 7 in early-stage lung adenocarcinoma

机译:早期肺腺癌7号染色体短臂上扩增模式和靶基因的表征

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摘要

Chromosomal alterations are a predominant genomic force contributing to the development of lung adenocarcinoma (ADC). High density genomic arrays were conducted to identify critical genetic landmarks that may be important mediators in the formation or progression of early-stage ADC. In this study, the most noteworthy and consistent observation was a copy number gain on the short arm of chromosome 7, which was detected in 85.7% (12/14) of cases. Notably, three distinct regions of amplification were identified between the 7p22.3 and q11.2 regions in 28.6% (4/14) of cases; at a size of 4.1 Mbp (7p22.3-p21.1), 2.6 Mbp (7p15.2-p14.1) and 1.5 Mbp (7p12.3-p11.2). Variations of the 7p11.2 locus that encodes EGFR are known to be oncogenic. Furthermore, potential target genes were identified that were previously not assumed to be involved in the pathogenesis of ADC, including CALM1P2 (7p11.2), HOXA4, HOXA5, HOXA6, HOXA7, HOXA9, HOXA10, HOXA11 and HOXA13 (7p15.2) and LOC442586, LOC442589, LOC442282, FAM20C and LOC442651 (7p22.3). The present study determined critical regions on the 7p arm of chromosome 7, which were implicated in ADC. The pattern of rearrangements on the 7p arm may be a consequence of the high density of potential targets and the identified genes at the 7p regions may aid in the development of therapeutic targets for ADC.
机译:染色体改变是导致肺腺癌(ADC)发展的主要基因组力。进行了高密度基因组阵列鉴定关键的遗传标志,这些标志可能是早期ADC形成或发展的重要介体。在这项研究中,最值得注意和最一致的观察是7号染色体短臂上的拷贝数增加,在85.7%(12/14)的病例中被发现。值得注意的是,在28.6%(4/14)的病例中,在7p22.3和q11.2之间发现了三个不同的扩增区域;大小分别为4.1 Mbp(7p22.3-p21.1),2.6 Mbp(7p15.2-p14.1)和1.5 Mbp(7p12.3-p11.2)。已知编码EGFR的7p11.2基因座的变异是致癌的。此外,已鉴定出以前不假定参与ADC发病机制的潜在靶基因,包括CALM1P2(7p11.2),HOXA4,HOXA5,HOXA6,HOXA7,HOXA9,HOXA10,HOXA11和HOXA13(7p15.2)和LOC442586,LOC442589,LOC442282,FAM20C和LOC442651(7p22.3)。本研究确定了7号染色体7p臂上的关键区域,这些区域与ADC有关。 7p臂上重排的模式可能是潜在靶标的高密度的结果,而在7p区域识别出的基因可能有助于开发ADC的治疗靶标。

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