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驱动癌症的体细胞突变的系统分析:揭示疾病发展中的功能性蛋白质区域。

Systematic analysis of somatic mutations driving cancer: uncovering functional protein regions in disease development.

作者信息

Mészáros Bálint, Zeke András, Reményi Attila, Simon István, Dosztányi Zsuzsanna

机构信息

Institute of Enzymology, Research Centre for Natural Sciences, Hungarian Academy of Sciences, 2 Magyar Tudósok krt, Budapest, H-1117, Hungary.

Lendület Protein Interaction Group, Institute of Enzymology, Research Centre for Natural Sciences, Hungarian Academy of Sciences, 2 Magyar Tudósok krt, Budapest, H-1117, Hungary.

出版信息

Biol Direct. 2016 May 5;11:23. doi: 10.1186/s13062-016-0125-6.

Abstract

BACKGROUND

Recent advances in sequencing technologies enable the large-scale identification of genes that are affected by various genetic alterations in cancer. However, understanding tumor development requires insights into how these changes cause altered protein function and impaired network regulation in general and/or in specific cancer types.

RESULTS

In this work we present a novel method called iSiMPRe that identifies regions that are significantly enriched in somatic mutations and short in-frame insertions or deletions (indels). Applying this unbiased method to the complete human proteome, by using data enriched through various cancer genome projects, we identified around 500 protein regions which could be linked to one or more of 27 distinct cancer types. These regions covered the majority of known cancer genes, surprisingly even tumor suppressors. Additionally, iSiMPRe also identified novel genes and regions that have not yet been associated with cancer.

CONCLUSIONS

While local somatic mutations correspond to only a subset of genetic variations that can lead to cancer, our systematic analyses revealed that they represent an accompanying feature of most cancer driver genes regardless of the primary mechanism by which they are perturbed during tumorigenesis. These results indicate that the accumulation of local somatic mutations can be used to pinpoint genes responsible for cancer formation and can also help to understand the effect of cancer mutations at the level of functional modules in a broad range of cancer driver genes.

REVIEWERS

This article was reviewed by Sándor Pongor, Michael Gromiha and Zoltán Gáspári.

摘要

背景

测序技术的最新进展使得大规模鉴定受癌症中各种基因改变影响的基因成为可能。然而,要理解肿瘤发展,需要深入了解这些变化如何导致蛋白质功能改变以及整体和/或特定癌症类型中网络调控受损。

结果

在这项工作中,我们提出了一种名为iSiMPRe的新方法,该方法可识别体细胞突变以及短的框内插入或缺失(插入缺失)显著富集的区域。通过使用各种癌症基因组计划富集的数据,将这种无偏方法应用于完整的人类蛋白质组,我们鉴定出约500个蛋白质区域,这些区域可能与27种不同癌症类型中的一种或多种相关。这些区域涵盖了大多数已知的癌症基因,令人惊讶的是甚至包括肿瘤抑制基因。此外,iSiMPRe还鉴定出了尚未与癌症相关的新基因和区域。

结论

虽然局部体细胞突变仅对应于可导致癌症的基因变异的一个子集,但我们的系统分析表明,无论它们在肿瘤发生过程中受到干扰的主要机制如何,它们都是大多数癌症驱动基因的伴随特征。这些结果表明,局部体细胞突变的积累可用于确定导致癌症形成的基因,也有助于在广泛的癌症驱动基因的功能模块水平上理解癌症突变的影响。

评审人

本文由Sándor Pongor、Michael Gromiha和Zoltán Gáspári评审。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0969/4858844/cba71b01e528/13062_2016_125_Fig1_HTML.jpg

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