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NUT 癌研究中的挑战与机遇。

Challenges and Opportunities in NUT Carcinoma Research.

机构信息

Department of Biomedical Engineering, Institute for Quantitative Health Science and Engineering, Michigan State University, East Lansing, MI 48824, USA.

Department of Obstetrics, Gynecology and Reproductive Biology, Institute for Quantitative Health Science and Engineering, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Genes (Basel). 2021 Feb 5;12(2):235. doi: 10.3390/genes12020235.

Abstract

NUT carcinoma (NC) is a type of aggressive cancer driven by chromosome translocations. Fusion genes between a DNA-binding protein, such as bromodomain and extraterminal domain (BET) proteins, and the testis-specific protein NUTM1 generated by these translocations drive the formation of NC. NC can develop in very young children without significant accumulation of somatic mutations, presenting a relatively clean model to study the genetic etiology of oncogenesis. However, after 20 years of research, a few challenging questions still remain for understanding the mechanism and developing therapeutics for NC. In this short review, we first briefly summarize the current knowledge regarding the molecular mechanism and targeted therapy development of NC. We then raise three challenging questions: (1) What is the cell of origin of NC? (2) How does the germline analogous epigenetic reprogramming process driven by the BET-NUTM1 fusion proteins cause NC? and (3) How will BET-NUTM1 targeted therapies be developed? We propose that with the unprecedented technological advancements in genome editing, animal models, stem cell biology, organoids, and chemical biology, we have unique opportunities to address these challenges.

摘要

NUT 癌(NC)是一种由染色体易位驱动的侵袭性癌症。这些易位产生的融合基因将 DNA 结合蛋白(如溴结构域和末端结构域(BET)蛋白)与睾丸特异性蛋白 NUTM1 连接在一起,驱动 NC 的形成。NC 可以在没有明显体细胞突变积累的非常年幼的儿童中发展,为研究肿瘤发生的遗传病因提供了一个相对干净的模型。然而,经过 20 年的研究,对于理解 NC 的发病机制和开发治疗方法,仍然存在一些具有挑战性的问题。在这篇简短的综述中,我们首先简要总结了 NC 的分子机制和靶向治疗开发的现有知识。然后我们提出了三个具有挑战性的问题:(1)NC 的起源细胞是什么?(2)由 BET-NUTM1 融合蛋白驱动的同源性表观遗传重编程过程如何导致 NC?(3)如何开发 BET-NUTM1 靶向治疗方法?我们提出,随着基因组编辑、动物模型、干细胞生物学、类器官和化学生物学等技术的空前进步,我们有独特的机会来应对这些挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f79/7915910/b7cb08b390d2/genes-12-00235-g001.jpg

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