Multi-omics analyses of MEN1 missense mutations identify disruption of menin-MLL and menin-JunD interactions as critical requirements for molecular pathogenicity.

IF 4.2 2区 生物学 Q1 GENETICS & HEREDITY
Koen M A Dreijerink, Ezgi Ozyerli-Goknar, Stefanie Koidl, Ewoud J van der Lelij, Priscilla van den Heuvel, Jeffrey J Kooijman, Martin L Biniossek, Kees W Rodenburg, Sheikh Nizamuddin, H T Marc Timmers
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引用次数: 2

Abstract

Background: Loss-of-function mutations of the multiple endocrine neoplasia type 1 (MEN1) gene are causal to the MEN1 tumor syndrome, but they are also commonly found in sporadic pancreatic neuroendocrine tumors and other types of cancers. The MEN1 gene product, menin, is involved in transcriptional and chromatin regulation, most prominently as an integral component of KMT2A/MLL1 and KMT2B/MLL2 containing COMPASS-like histone H3K4 methyltransferase complexes. In a mutually exclusive fashion, menin also interacts with the JunD subunit of the AP-1 and ATF/CREB transcription factors.

Results: Here, we applied and in silico screening approach for 253 disease-related MEN1 missense mutations in order to select a set of nine menin mutations in surface-exposed residues. The protein interactomes of these mutants were assessed by quantitative mass spectrometry, which indicated that seven of the nine mutants disrupt interactions with both MLL1/MLL2 and JunD complexes. Interestingly, we identified three missense mutations, R52G, E255K and E359K, which predominantly reduce the MLL1 and MLL2 interactions when compared with JunD. This observation was supported by a pronounced loss of binding of the R52G, E255K and E359K mutant proteins at unique MLL1 genomic binding sites with less effect on unique JunD sites.

Conclusions: Our results underline the effects of MEN1 gene mutations in both familial and sporadic tumors of endocrine origin on the interactions of menin with the MLL1 and MLL2 histone H3K4 methyltransferase complexes and with JunD-containing transcription factors. Menin binding pocket mutants R52G, E255K and E359K have differential effects on MLL1/MLL2 and JunD interactions, which translate into differential genomic binding patterns. Our findings encourage future studies addressing the pathophysiological relevance of the separate MLL1/MLL2- and JunD-dependent functions of menin mutants in MEN1 disease model systems.

Abstract Image

Abstract Image

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MEN1错义突变的多组学分析表明,MEN1 - mll和MEN1 - jund相互作用的破坏是分子致病性的关键条件。
背景:MEN1基因的功能缺失突变是MEN1肿瘤综合征的病因,但也常见于散发性胰腺神经内分泌肿瘤和其他类型的癌症。MEN1基因产物menin参与转录和染色质调控,最重要的是作为含有compass样组蛋白H3K4甲基转移酶复合物的KMT2A/MLL1和KMT2B/MLL2的组成部分。menin还以互斥的方式与AP-1和ATF/CREB转录因子的JunD亚基相互作用。结果:在此,我们应用了253个疾病相关的MEN1错义突变的筛选方法,以便在表面暴露的残留物中选择一组9个MEN1突变。这些突变体的蛋白质相互作用组通过定量质谱分析进行了评估,结果表明,9个突变体中有7个破坏了与MLL1/MLL2和JunD复合物的相互作用。有趣的是,我们发现了三个错义突变,R52G, E255K和E359K,与JunD相比,它们主要减少了MLL1和MLL2的相互作用。R52G、E255K和E359K突变蛋白在独特的MLL1基因组结合位点上的结合明显缺失,而对独特的JunD位点的影响较小,支持了这一观察结果。结论:我们的研究结果强调了家族性和散发性内分泌肿瘤中MEN1基因突变对menin与MLL1和MLL2组蛋白H3K4甲基转移酶复合物以及含有jun的转录因子的相互作用的影响。Menin结合口袋突变体R52G、E255K和E359K对MLL1/MLL2和JunD相互作用有不同的影响,从而转化为不同的基因组结合模式。我们的发现鼓励了未来的研究,以解决MEN1疾病模型系统中menin突变体单独的MLL1/MLL2和jun依赖功能的病理生理相关性。
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来源期刊
Epigenetics & Chromatin
Epigenetics & Chromatin GENETICS & HEREDITY-
CiteScore
7.00
自引率
0.00%
发文量
35
审稿时长
1 months
期刊介绍: Epigenetics & Chromatin is a peer-reviewed, open access, online journal that publishes research, and reviews, providing novel insights into epigenetic inheritance and chromatin-based interactions. The journal aims to understand how gene and chromosomal elements are regulated and their activities maintained during processes such as cell division, differentiation and environmental alteration.
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