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BRCA1相关蛋白1(BARD1)及其可变剪接变体BARD1δ在端粒稳定性中的拮抗功能

Antagonizing functions of BARD1 and its alternatively spliced variant BARD1δ in telomere stability.

作者信息

Pilyugin Maxim, André Pierre-Alain, Ratajska Magdalena, Kuzniacka Alina, Limon Janusz, Tournier Benjamin B, Colas Julien, Laurent Geoff, Irminger-Finger Irmgard

机构信息

Department of Gynecology and Obstetrics Geneva University Hospitals, Geneva, Switzerland.

Department of Biology and Genetics, Medical University of Gdansk, Poland.

出版信息

Oncotarget. 2017 Feb 7;8(6):9339-9353. doi: 10.18632/oncotarget.14068.

Abstract

Previous reports have shown that expression of BARD1δ, a deletion-bearing isoform of BARD1, correlates with tumor aggressiveness and progression. We show that expression of BARD1δ induces cell cycle arrest in vitro and in vivo in non-malignant cells. We investigated the mechanism that leads to proliferation arrest and found that BARD1δ overexpression induced mitotic arrest with chromosome and telomere aberrations in cell cultures, in transgenic mice, and in cells from human breast and ovarian cancer patients with BARD1 mutations. BARD1δ binds more efficiently than BARD1 to telomere binding proteins and causes their depletion from telomeres, leading to telomere and chromosomal instability. While this induces cell cycle arrest, cancer cells lacking G2/M checkpoint controls might continue to proliferate despite the BARD1δ-induced chromosomal instability. These features of BARD1δ may make it a genome permutator and a driver of continuous uncontrolled proliferation of cancer cells.

摘要

先前的报告显示,BARD1的一种携带缺失的异构体BARD1δ的表达与肿瘤侵袭性和进展相关。我们发现,BARD1δ的表达在体外和体内均可诱导非恶性细胞发生细胞周期停滞。我们研究了导致增殖停滞的机制,发现BARD1δ的过表达在细胞培养物、转基因小鼠以及患有BARD1突变的人类乳腺癌和卵巢癌患者的细胞中诱导有丝分裂停滞,并伴有染色体和端粒畸变。与BARD1相比,BARD1δ能更有效地结合端粒结合蛋白,并导致它们从端粒上耗竭,从而导致端粒和染色体不稳定。虽然这会诱导细胞周期停滞,但缺乏G2/M检查点控制的癌细胞可能会不顾BARD1δ诱导的染色体不稳定而继续增殖。BARD1δ的这些特性可能使其成为基因组排列改变者以及癌细胞持续不受控制增殖的驱动因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d79/5354735/e18533367c8c/oncotarget-08-9339-g001.jpg

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