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抑癌基因 MCPH1 调节与恶性转化和染色体组装相关的基因表达谱。

Tumor suppressor MCPH1 regulates gene expression profiles related to malignant conversion and chromosomal assembly.

机构信息

Laboratory of Cancer Genetics and Tumor Biology, Cancer and Translational Medicine Research Unit and Biocenter Oulu, University of Oulu, Oulu, Finland.

Biocenter Oulu, Light Microscopy Core Facility, University of Oulu, Oulu, Finland.

出版信息

Int J Cancer. 2019 Oct 15;145(8):2070-2081. doi: 10.1002/ijc.32234. Epub 2019 Mar 21.

Abstract

Strong inherited predisposition to breast cancer is estimated to cause about 5-10% of all breast cancer cases. As the known susceptibility genes, such as BRCA1 and BRCA2, explain only a fraction of this, additional predisposing genes and related biological mechanisms are actively being searched for. We have recently identified a recurrent MCPH1 germline mutation, p.Arg304ValfsTer3, as a breast cancer susceptibility allele. MCPH1 encodes a multifunctional protein involved in maintenance of genomic integrity and it is also somatically altered in various cancer types, including breast cancer. Additionally, biallelic MCPH1 mutations are causative for microcephaly and at cellular level premature chromosome condensation. To study the molecular mechanisms leading to cancer predisposition and malignant conversion, here we have modeled the effect of MCPH1 p.Arg304ValfsTer3 mutation using gene-edited MCF10A breast epithelial cells. As a complementary approach, we also sought for additional potential cancer driver mutations in MCPH1 p.Arg304ValfsTer3 carrier breast tumors. We show that mutated MCPH1 de-regulates transcriptional programs related to invasion and metastasis and leads to downregulation of histone genes. These global transcriptional changes are mirrored by significantly increased migration and invasion potential of the cells as well as abnormal chromosomal condensation both before and after mitosis. These findings provide novel molecular insights to MCPH1 tumor suppressor functions and establish a role in regulation of transcriptional programs related to malignant conversion and chromosomal assembly. The MCPH1 p.Arg304ValfsTer3 carrier breast tumors showed recurrent tumor suppressor gene TP53 mutations, which were also significantly over-represented in breast tumors with somatically inactivated MCPH1.

摘要

强烈的遗传性乳腺癌易感性估计导致了所有乳腺癌病例的 5-10%。由于已知的易感基因,如 BRCA1 和 BRCA2,仅能解释其中的一部分,因此正在积极寻找其他易感性基因和相关的生物学机制。我们最近发现了一种反复出现的 MCPH1 种系突变,p.Arg304ValfsTer3,是一种乳腺癌易感等位基因。MCPH1 编码一种多功能蛋白,参与维持基因组完整性,并且在包括乳腺癌在内的各种癌症类型中也发生了体细胞改变。此外,双等位基因 MCPH1 突变是小头症的致病原因,并且在细胞水平上导致过早的染色体凝聚。为了研究导致癌症易感性和恶性转化的分子机制,我们使用基因编辑的 MCF10A 乳腺上皮细胞模拟了 MCPH1 p.Arg304ValfsTer3 突变的影响。作为一种补充方法,我们还在 MCPH1 p.Arg304ValfsTer3 携带者的乳腺癌肿瘤中寻找其他潜在的癌症驱动突变。我们表明,突变的 MCPH1 使与侵袭和转移相关的转录程序失调,并导致组蛋白基因下调。这些全局转录变化与细胞迁移和侵袭能力的显著增加以及有丝分裂前后异常的染色体凝聚相吻合。这些发现为 MCPH1 肿瘤抑制功能提供了新的分子见解,并确立了其在调节与恶性转化和染色体组装相关的转录程序中的作用。MCPH1 p.Arg304ValfsTer3 携带者的乳腺癌肿瘤显示出反复出现的肿瘤抑制基因 TP53 突变,并且在体细胞失活的 MCPH1 中的乳腺癌肿瘤中也明显过表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f11/6767439/7177b5e5098d/IJC-145-2070-g001.jpg

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