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复发性8p11 - 12扩增子的特征鉴定出磷酸酶蛋白PPAPDC1B作为乳腺癌的一个新治疗靶点。

Characterization of the recurrent 8p11-12 amplicon identifies PPAPDC1B, a phosphatase protein, as a new therapeutic target in breast cancer.

作者信息

Bernard-Pierrot Isabelle, Gruel Nadège, Stransky Nicolas, Vincent-Salomon Anne, Reyal Fabien, Raynal Virginie, Vallot Céline, Pierron Gaëlle, Radvanyi François, Delattre Olivier

机构信息

UMR 144, Centre National de la Recherche Scientifique, Institut Curie, Paris, France.

出版信息

Cancer Res. 2008 Sep 1;68(17):7165-75. doi: 10.1158/0008-5472.CAN-08-1360.

DOI:10.1158/0008-5472.CAN-08-1360
PMID:18757432
Abstract

The 8p11-12 chromosome region is one of the regions most frequently amplified in breast carcinoma (10-15% of cases). Several genes within this region have been identified as candidate oncogenes, as they are both amplified and overexpressed. However, very few studies have explored the role of these genes in cell transformation, with the aim of identifying valuable therapeutic targets. An analysis of comparative genomic hybridization array and expression profiling data for a series of 152 ductal breast carcinomas and 21 cell lines identified five genes (LSM1, BAG4, DDHD2, PPAPDC1B, and WHSC1L1) within the amplified region as consistently overexpressed due to an increased gene copy number. The use of small interfering RNA to knock down the expression of each of these genes showed the major role played by two genes, PPAPDC1B and WHSC1L1, in regulating the survival and transformation of two different cell lines harboring the 8p amplicon. The role of these two genes in cell survival and cell transformation was also confirmed by long-term knockdown expression studies using short hairpin RNAs. The potential of PPAPDC1B, which encodes a transmembrane phosphatase, as a therapeutic target was further shown by the strong inhibition of growth of breast tumor xenografts displaying 8p11-12 amplification induced by the silencing of PPAPDC1B. The oncogenic properties of PPAPDC1B were further shown by its ability to transform NIH-3T3 fibroblasts, inducing their anchorage-independent growth. Finally, microarray experiments on PPAPDC1B knockdown indicated that this gene interfered with multiple cell signaling pathways, including the Janus-activated kinase-signal transducer and activator of transcription, mitogen-activated protein kinase, and protein kinase C pathways. PPAPDC1B may also potentiate the estrogen receptor pathway by down-regulating DUSP22.

摘要

8p11 - 12染色体区域是乳腺癌中最常发生扩增的区域之一(10% - 15%的病例)。该区域内的几个基因已被鉴定为候选致癌基因,因为它们既发生扩增又过度表达。然而,很少有研究探索这些基因在细胞转化中的作用,目的是确定有价值的治疗靶点。对152例乳腺导管癌和21种细胞系的比较基因组杂交阵列及表达谱数据进行分析,确定扩增区域内的五个基因(LSM1、BAG4、DDHD2、PPAPDC1B和WHSC1L1)由于基因拷贝数增加而持续过度表达。使用小干扰RNA敲低这些基因中的每一个的表达,结果表明PPAPDC1B和WHSC1L1这两个基因在调节携带8p扩增子的两种不同细胞系的存活和转化中起主要作用。使用短发夹RNA进行的长期敲低表达研究也证实了这两个基因在细胞存活和细胞转化中的作用。通过沉默PPAPDC1B诱导显示8p11 - 12扩增的乳腺肿瘤异种移植瘤生长受到强烈抑制,进一步表明编码跨膜磷酸酶的PPAPDC1B作为治疗靶点的潜力。PPAPDC1B的致癌特性还通过其转化NIH - 3T3成纤维细胞、诱导其非锚定依赖性生长的能力得到进一步证明。最后,对PPAPDC1B敲低的微阵列实验表明,该基因干扰了多个细胞信号通路,包括Janus激活激酶 - 信号转导和转录激活因子、丝裂原活化蛋白激酶和蛋白激酶C通路。PPAPDC1B还可能通过下调DUSP22增强雌激素受体通路。

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