Winter Sherry L, Bosnoyan-Collins Lucine, Pinnaduwage Dushanthi, Andrulis Irene L
Fred A, Litwin Centre for Cancer Genetics, Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Toronto, Ontario, Canada.
BMC Cancer. 2007 May 19;7:85. doi: 10.1186/1471-2407-7-85.
The breast cancer susceptibility gene, BRCA1, is implicated in multiple cellular processes including DNA repair, the transactivation of genes, and the ubiquitination of proteins; however its precise functions remain to be fully understood. Identification and characterization of BRCA1 protein interactions may help to further elucidate the function and regulation of BRCA1. Additionally, detection of changes in the expression levels of BRCA1 and its interacting proteins in primary human breast tumors may further illuminate their role in the development of breast cancer.
We performed a yeast two-hybrid study to identify proteins that interact with exon11 of BRCA1 and identified Protein Phosphatase 1beta (PP1beta), an isoform of the serine threonine phosphatase, PP1. GST-pull down and co-immunoprecipitation assays were performed to further characterize this interaction. Additionally, Real-Time PCR was utilized to determine the expression of BRCA1, PP1alpha, beta and gamma in primary human breast tumors and normal breast tissue to identify alterations in the expression of these genes in breast cancer.
PP1 and BRCA1 co-immunoprecipitate and the region within BRCA1 as well as the specific PP1 interacting domain mediating this interaction were identified. Following mRNA expression analysis, we identified low levels of BRCA1 and variable levels of PP1alpha and beta in primary sporadic human breast tumors. Furthermore, BRCA1, PP1beta and PP1gamma were significantly higher in normal tissue specimens (BRCA1 p = 0.01, PP1beta: p = 0.03, PP1gamma, p = 1.9 x 10(-6)) compared to sporadic breast tumor samples. Interestingly, we also identified that ER negative tumors are associated with low levels of PP1alpha expression.
The identification and characterization of the interaction of BRCA1 with PP1 and detection of changes in the expression of PP1 and genes encoding other BRCA1 associated proteins identifies important genetic pathways that may be significant to breast tumorigenesis. Alterations in the expression of genes, particularly phosphatases that operate in association with BRCA1, could negatively affect the function of BRCA1 or BRCA1 associated proteins, contributing to the development of breast cancer.
乳腺癌易感基因BRCA1参与多种细胞过程,包括DNA修复、基因的反式激活以及蛋白质的泛素化;然而其确切功能仍有待充分了解。鉴定和表征BRCA1蛋白相互作用可能有助于进一步阐明BRCA1的功能和调控机制。此外,检测原发性人类乳腺肿瘤中BRCA1及其相互作用蛋白表达水平的变化可能会进一步揭示它们在乳腺癌发生发展中的作用。
我们进行了酵母双杂交研究,以鉴定与BRCA1第11外显子相互作用的蛋白质,并鉴定出丝氨酸苏氨酸磷酸酶PP1的一种同工型——蛋白磷酸酶1β(PP1β)。进行了谷胱甘肽S-转移酶(GST)下拉实验和免疫共沉淀实验以进一步表征这种相互作用。此外,利用实时定量聚合酶链反应(Real-Time PCR)来测定原发性人类乳腺肿瘤和正常乳腺组织中BRCA1、PP1α、PP1β和PP1γ的表达,以确定这些基因在乳腺癌中的表达变化。
PP1和BRCA1进行了免疫共沉淀,并鉴定出BRCA1内的区域以及介导这种相互作用的特定PP1相互作用结构域。在mRNA表达分析之后,我们在原发性散发性人类乳腺肿瘤中发现了低水平的BRCA1以及PP1α和PP1β的可变水平。此外,与散发性乳腺肿瘤样本相比,正常组织标本中BRCA1、PP1β和PP1γ显著更高(BRCA1:p = 0.01,PP1β:p = 0.03,PP1γ:p = 1.9×10⁻⁶)。有趣的是,我们还发现雌激素受体(ER)阴性肿瘤与低水平的PP1α表达相关。
鉴定和表征BRCA1与PP1的相互作用以及检测PP1和编码其他BRCA1相关蛋白的基因表达变化,确定了可能对乳腺肿瘤发生具有重要意义的重要遗传途径。基因表达的改变,特别是与BRCA1协同作用的磷酸酶的改变,可能会对BRCA1或BRCA1相关蛋白的功能产生负面影响,从而促进乳腺癌的发展。