Laboratory of Cancer Genetics and Tumor Biology, Translational Medicine Research Unit, Biocenter Oulu and Faculty of Medicine, Medical Research Center Oulu, University of Oulu, Oulu, Finland.
Garvan Institute of Medical Research, Sydney, Australia.
Cell Mol Life Sci. 2024 Apr 10;81(1):173. doi: 10.1007/s00018-024-05183-6.
Heterozygous mutations in any of three major genes, BRCA1, BRCA2 and PALB2, are associated with high-risk hereditary breast cancer susceptibility frequently seen as familial disease clustering. PALB2 is a key interaction partner and regulator of several vital cellular activities of BRCA1 and BRCA2, and is thus required for DNA damage repair and alleviation of replicative and oxidative stress. Little is however known about how PALB2-deficiency affects cell function beyond that, especially in the three-dimensional setting, and also about its role during early steps of malignancy development. To answer these questions, we have generated biologically relevant MCF10A mammary epithelial cell lines with mutations that are comparable to certain clinically important PALB2 defects. We show in a non-cancerous background how both mono- and biallelically PALB2-mutated cells exhibit gross spontaneous DNA damage and mitotic aberrations. Furthermore, PALB2-deficiency disturbs three-dimensional spheroid morphology, increases the migrational capacity and invasiveness of the cells, and broadly alters their transcriptome profiles. TGFβ signaling and KRT14 expression are enhanced in PALB2-mutated cells and their inhibition and knock down, respectively, lead to partial restoration of cell functions. KRT14-positive cells are also more abundant with DNA damage than KRT14-negative cells. The obtained results indicate comprehensive cellular changes upon PALB2 mutations, even in the presence of half dosage of wild type PALB2 and demonstrate how PALB2 mutations may predispose their carriers to malignancy.
三种主要基因(BRCA1、BRCA2 和 PALB2)中的杂合突变与高风险遗传性乳腺癌易感性相关,这种易感性常表现为家族性疾病聚集。PALB2 是 BRCA1 和 BRCA2 的几个重要细胞活动的关键相互作用伙伴和调节剂,因此对于 DNA 损伤修复和缓解复制和氧化应激至关重要。然而,人们对 PALB2 缺陷如何影响细胞功能知之甚少,特别是在三维环境中,也不知道其在恶性肿瘤发展早期阶段的作用。为了回答这些问题,我们生成了具有与某些临床上重要的 PALB2 缺陷相当的突变的生物相关 MCF10A 乳腺上皮细胞系。我们在非癌性背景下展示了单等位基因和双等位基因 PALB2 突变细胞如何表现出明显的自发 DNA 损伤和有丝分裂异常。此外,PALB2 缺陷扰乱了三维球体形态,增加了细胞的迁移和侵袭能力,并广泛改变了它们的转录组谱。TGFβ 信号和 KRT14 表达在 PALB2 突变细胞中增强,分别抑制和敲低 KRT14 可导致细胞功能部分恢复。具有 DNA 损伤的 KRT14 阳性细胞也比 KRT14 阴性细胞更为丰富。获得的结果表明,即使存在野生型 PALB2 的一半剂量,PALB2 突变也会导致全面的细胞变化,并证明 PALB2 突变如何使它们的携带者易患恶性肿瘤。