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尿路上皮癌中p85α不同区域突变的鉴定

Identification of mutations in distinct regions of p85 alpha in urothelial cancer.

作者信息

Ross Rebecca L, Burns Julie E, Taylor Claire F, Mellor Paul, Anderson Deborah H, Knowles Margaret A

机构信息

Section of Experimental Oncology, Leeds Institute of Cancer and Pathology, St James's University Hospital, Leeds, United Kingdom.

Leeds Cancer Research United Kingdom Centre Genomics Facility, Leeds Institute of Cancer and Pathology, St James's University Hospital, Leeds, United Kingdom.

出版信息

PLoS One. 2013 Dec 18;8(12):e84411. doi: 10.1371/journal.pone.0084411. eCollection 2013.

Abstract

Bladder cancers commonly show genetic aberrations in the phosphatidylinositol 3-kinase signaling pathway. Here we have screened for mutations in PIK3R1, which encodes p85α, one of the regulatory subunits of PI3K. Two hundred and sixty-four bladder tumours and 41 bladder tumour cell lines were screened and 18 mutations were detected. Thirteen mutations were in C-terminal domains and are predicted to interfere with the interaction between p85α and p110α. Five mutations were in the BH domain of PIK3R1. This region has been implicated in p110α-independent roles of p85α, such as binding to and altering the activities of PTEN, Rab4 and Rab5. Expression of these mutant BH-p85α forms in mouse embryonic fibroblasts with p85α knockout indicated that all forms, except the truncation mutants, could bind and stabilize p110α but did not increase AKT phosphorylation, suggesting that BH mutations function independently of p110α. In a panel of 44 bladder tumour cell lines, 80% had reduced PIK3R1 mRNA expression relative to normal urothelial cells. This, along with mutation of PIK3R1, may alter BH domain functioning. Our findings suggest that mutant forms of p85α may play an oncogenic role in bladder cancer, not only via loss of ability to regulate p110α but also via altered function of the BH domain.

摘要

膀胱癌通常在磷脂酰肌醇3 - 激酶信号通路中表现出基因畸变。在此,我们筛查了PIK3R1的突变,该基因编码PI3K的调节亚基之一p85α。我们对264例膀胱肿瘤和41个膀胱肿瘤细胞系进行了筛查,检测到18个突变。13个突变位于C末端结构域,预计会干扰p85α与p110α之间的相互作用。5个突变位于PIK3R1的BH结构域。该区域与p85α不依赖p110α的作用有关,如与PTEN、Rab4和Rab5结合并改变其活性。在p85α基因敲除的小鼠胚胎成纤维细胞中表达这些突变的BH - p85α形式表明,除了截短突变体之外,所有形式都能结合并稳定p110α,但不会增加AKT磷酸化,这表明BH突变的作用独立于p110α。在一组44个膀胱肿瘤细胞系中,80%相对于正常尿路上皮细胞的PIK3R1 mRNA表达降低。这与PIK3R1的突变一起,可能会改变BH结构域的功能。我们的研究结果表明,p85α的突变形式可能在膀胱癌中发挥致癌作用,不仅通过丧失调节p110α的能力,还通过改变BH结构域的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0969/3867501/c2b96a92404d/pone.0084411.g001.jpg

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