首页> 美国卫生研究院文献>Neoplasia (New York N.Y.) >A Mammary-Specific Long-range Deletion on Mouse Chromosome 11 Accelerates Brca1-Associated Mammary Tumorigenesis
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A Mammary-Specific Long-range Deletion on Mouse Chromosome 11 Accelerates Brca1-Associated Mammary Tumorigenesis

机译:小鼠染色体11的乳腺特异性远程删除加速Brca1相关的乳腺肿瘤发生。

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摘要

We engineered a mammary-specific knockout model for Brca1 deficiency that also lacks the majority of one chromosome 11 to determine whether tumor susceptibility loci reside on this chromosome that cooperate with the loss of Brca1 during mammary cancer formation. Brca1-deficient females that are haploinsufficient in 60 cM of chromosome 11 exhibited accelerated mammary tumorigenesis in comparison to Brca1 conditional knockout mice. On the histopathologic level, these tumors were either adenocarcinomas or benign, inflammatory lesions. Like human BRCA1-associated breast cancers, mammary carcinomas in this new mouse model were ERα-negative and of basal epithelial origin. Brca1 deficiency and haploinsufficiency in 60 cM of chromosome 11 caused widespread genome instability as determined by spectral karyotyping analysis. In addition to the verification of the long-range deletion event, the spectral karyotyping analysis revealed that the duplication of the genome and higher degree of aneuploidy occur rather late in tumor progression. Despite chromosomal rearrangements near the Trp53 locus as determined by fluorescence in situ hybridization, the Trp53 gene was transcriptionally active. The analysis of the coding sequence and expression pattern of p53 and p21 suggests that loss-of-heterozygosity of Trp53 caused by somatic mutations contributes to accelerated mammary tumorigenesis in this model.
机译:我们针对Brca1缺乏症设计了一种乳腺特异性基因敲除模型,该模型也缺乏一个染色体11的大部分,以确定该肿瘤易感性基因座是否位于该染色体上并与乳腺癌形成过程中Brca1的缺失协同作用。与条件性敲除小鼠Brca1相比,在60 cM染色体11中单倍不足的Brca1缺陷雌性表现出加速的乳腺肿瘤发生。在组织病理学水平上,这些肿瘤是腺癌或良性炎症性病变。像人类BRCA1相关的乳腺癌一样,在这种新的小鼠模型中,乳腺癌为ERα阴性且起源于基底上皮。通过光谱核型分析,Brca1缺乏和单倍体不足在60 cM的11号染色体上引起了广泛的基因组不稳定。除了验证远程缺失事件外,光谱核型分析还显示基因组的重复和更高的非整倍性发生在肿瘤进展的后期。尽管通过荧光原位杂交确定了Trp53基因座附近的染色体重排,但是Trp53基因在转录上是有活性的。对p53和p21编码序列和表达模式的分析表明,由体细胞突变引起的Trp53杂合性缺失有助于加速该模型中的乳腺肿瘤发生。

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