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对调控基因组的研究揭示了癌症进化过程中广泛存在的准不足现象。

interrogation of regulatory genomes reveals extensive quasi-insufficiency in cancer evolution.

作者信息

Fischer Anja, Lersch Robert, de Andrade Krätzig Niklas, Strong Alexander, Friedrich Mathias J, Weber Julia, Engleitner Thomas, Öllinger Rupert, Yen Hsi-Yu, Kohlhofer Ursula, Gonzalez-Menendez Irene, Sailer David, Kogan Liz, Lahnalampi Mari, Laukkanen Saara, Kaltenbacher Thorsten, Klement Christine, Rezaei Majdaddin, Ammon Tim, Montero Juan J, Schneider Günter, Mayerle Julia, Heikenwälder Mathias, Schmidt-Supprian Marc, Quintanilla-Martinez Leticia, Steiger Katja, Liu Pentao, Cadiñanos Juan, Vassiliou George S, Saur Dieter, Lohi Olli, Heinäniemi Merja, Conte Nathalie, Bradley Allan, Rad Lena, Rad Roland

机构信息

Institute of Molecular Oncology and Functional Genomics, School of Medicine, Technische Universität München, 81675 Munich, Germany.

Center for Translational Cancer Research (TranslaTUM), School of Medicine, Technische Universität München, 81675 Munich, Germany.

出版信息

Cell Genom. 2023 Mar 8;3(3):100276. doi: 10.1016/j.xgen.2023.100276.

Abstract

In contrast to mono- or biallelic loss of tumor-suppressor function, effects of discrete gene dysregulations, as caused by non-coding (epi)genome alterations, are poorly understood. Here, by perturbing the regulatory genome in mice, we uncover pervasive roles of subtle gene expression variation in cancer evolution. Genome-wide screens characterizing 1,450 tumors revealed that such quasi-insufficiency is extensive across entities and displays diverse context dependencies, such as distinct cell-of-origin associations in T-ALL subtypes. We compile catalogs of non-coding regions linked to quasi-insufficiency, show their enrichment with human cancer risk variants, and provide functional insights by engineering regulatory alterations in mice. As such, kilo-/megabase deletions in a -linked non-coding region triggered aggressive malignancies, with allele-specific tumor spectra reflecting gradual gene dysregulations through modular and cell-type-specific enhancer activities. Our study constitutes a first survey toward a systems-level understanding of quasi-insufficiency in cancer and gives multifaceted insights into tumor evolution and the tissue-specific effects of non-coding mutations.

摘要

与肿瘤抑制功能的单等位基因或双等位基因缺失不同,由非编码(表观)基因组改变引起的离散基因失调的影响还知之甚少。在这里,通过扰动小鼠的调控基因组,我们揭示了细微基因表达变化在癌症进化中的普遍作用。对1450个肿瘤进行的全基因组筛查表明,这种准基因不足在各种实体中广泛存在,并表现出不同的背景依赖性,例如在T-ALL亚型中与不同的细胞起源相关。我们编制了与准基因不足相关的非编码区域目录,显示它们富含人类癌症风险变异,并通过在小鼠中设计调控改变提供功能见解。例如,α-连锁非编码区域中的千碱基/兆碱基缺失引发侵袭性恶性肿瘤,等位基因特异性肿瘤谱通过模块化和细胞类型特异性增强子活性反映出逐渐的基因失调。我们的研究构成了对癌症中准基因不足进行系统水平理解的首次调查,并对肿瘤进化以及非编码突变的组织特异性影响提供了多方面的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73ee/10025556/f021b28cd8e9/fx1.jpg

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