4.3 Article

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

Journal

EPIGENETICS & CHROMATIN
Volume 15, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s13072-022-00461-8

Keywords

Tumor suppressor; MEN1 syndrome; AP-1 transcription factors; ATF transcription factors; Quantitative mass spectrometry; CUT&RUN genome profiling

Funding

  1. Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) [192904750-SFB 992, SFB850, TI688/1-1]
  2. DFG [SFB850]
  3. Projekt DEAL

Ask authors/readers for more resources

Our study applied an in silico screening approach to select nine surface-exposed menin mutants from 253 disease-related MEN1 missense mutations. We found that seven of these mutants disrupt interactions with both MLL1/MLL2 and JunD complexes. Interestingly, three mutants, R52G, E255K, and E359K, predominantly reduce the interactions with MLL1 and MLL2 compared to JunD. This differential effect on interactions translates into different genomic binding patterns.
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.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.3
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available