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获得性交联剂抗性与新型剪接 BRCA2 蛋白变异体相关,用于 BRCA2 缺失的分子表型分析。

Acquired cross-linker resistance associated with a novel spliced BRCA2 protein variant for molecular phenotyping of BRCA2 disruption.

机构信息

Stem Cell &Leukaemia Proteomics Laboratory, Manchester Cancer Research Centre, Division of Molecular and Clinical Cancer Sciences, Faculty of Biology, Medicine &Health, University of Manchester, Manchester, UK.

Manchester Academic Health Science Centre, Manchester, UK.

出版信息

Cell Death Dis. 2017 Jun 15;8(6):e2875. doi: 10.1038/cddis.2017.264.

Abstract

BRCA2 encodes a protein with a fundamental role in homologous recombination that is essential for normal development. Carrier status of mutations in BRCA2 is associated with familial breast and ovarian cancer, while bi-allelic BRCA2 mutations can cause Fanconi anemia (FA), a cancer predisposition syndrome with cellular cross-linker hypersensitivity. Cancers associated with BRCA2 mutations can acquire chemo-resistance on relapse. We modeled acquired cross-linker resistance with an FA-derived BRCA2-mutated acute myeloid leukemia (AML) platform. Associated with acquired cross-linker resistance was the expression of a functional BRCA2 protein variant lacking exon 5 and exon 7 (BRCA2), implying a role for BRCA2 splicing for acquired chemo-resistance. Integrated network analysis of transcriptomic and proteomic differences for phenotyping of BRCA2 disruption infers impact on transcription and chromatin remodeling in addition to the DNA damage response. The striking overlap with transcriptional profiles of FA patient hematopoiesis and BRCA mutation associated ovarian cancer helps define and explicate the 'BRCAness' profile.

摘要

BRCA2 编码一种在同源重组中具有基本作用的蛋白质,这对正常发育至关重要。BRCA2 突变的携带者状态与家族性乳腺癌和卵巢癌有关,而双等位基因 BRCA2 突变可导致范可尼贫血(FA),这是一种具有细胞交联剂超敏反应的癌症易感性综合征。与 BRCA2 突变相关的癌症在复发时可能会获得化疗耐药性。我们使用源自 FA 的 BRCA2 突变急性髓系白血病(AML)平台来模拟获得性交联剂耐药性。获得性交联剂耐药性与功能性 BRCA2 蛋白变体的表达相关,该变体缺失外显子 5 和外显子 7(BRCA2),这意味着 BRCA2 剪接在获得性化疗耐药性中起作用。转录组和蛋白质组差异的综合网络分析用于表型分析 BRCA2 缺失,推断除了 DNA 损伤反应之外,还对转录和染色质重塑有影响。与 FA 患者造血和 BRCA 突变相关卵巢癌的转录谱惊人重叠,有助于定义和阐明“BRCA 特征”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76a4/5520920/ac92edebafe0/cddis2017264f1.jpg

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