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Published on: May 17, 2016
The same pocket in menin binds both MLL and JUND but has opposite effects on transcription
Jing Huang1, Buddha Gurung, Bingbing Wan
1Howard Hughes Medical Institute, University of Michigan Medical School, Ann Arbor, Michigan 48109, USA.
Abstract:
Menin is a tumour suppressor protein whose loss or inactivation causes multiple endocrine neoplasia 1 (MEN1), a hereditary autosomal dominant tumour syndrome that is characterized by tumorigenesis in multiple endocrine organs. Menin interacts with many proteins and is involved in a variety of cellular processes. Menin binds the JUN family transcription factor JUND and inhibits its transcriptional activity. Several MEN1 missense mutations disrupt the menin-JUND interaction, suggesting a correlation between the tumour-suppressor function of menin and its suppression of JUND-activated transcription. Menin also interacts with mixed lineage leukaemia protein 1 (MLL1), a histone H3 lysine 4 methyltransferase, and functions as an oncogenic cofactor to upregulate gene transcription and promote MLL1-fusion-protein-induced leukaemogenesis. A recent report on the tethering of MLL1 to chromatin binding factor lens epithelium-derived growth factor (LEDGF) by menin indicates that menin is a molecular adaptor coordinating the functions of multiple proteins. Despite its importance, how menin interacts with many distinct partners and regulates their functions remains poorly understood. Here we present the crystal structures of human menin in its free form and in complexes with MLL1 or with JUND, or with an MLL1-LEDGF heterodimer. These structures show that menin contains a deep pocket that binds short peptides of MLL1 or JUND in the same manner, but that it can have opposite effects on transcription. The menin-JUND interaction blocks JUN N-terminal kinase (JNK)-mediated JUND phosphorylation and suppresses JUND-induced transcription. In contrast, menin promotes gene transcription by binding the transcription activator MLL1 through the peptide pocket while still interacting with the chromatin-anchoring protein LEDGF at a distinct surface formed by both menin and MLL1.
Insights
Menin protein
Area of Science:
- Biochemistry
- Molecular Biology
- Genetics
Background:
- Menin is a tumor suppressor protein linked to multiple endocrine neoplasia 1 (MEN1).
- Menin's interactions with proteins like JUND and MLL1 are crucial for cellular processes.
- Understanding menin's diverse protein interactions is key to its tumor suppressor function.
Purpose of the Study:
- To elucidate the structural mechanisms behind menin's interactions with MLL1 and JUND.
- To understand how menin's binding to different partners affects transcriptional regulation.
- To provide structural insights into menin's role in MEN1 and leukaemogenesis.
Main Methods:
- X-ray crystallography was used to determine the structures of human menin.
- Structures were obtained for free menin and in complexes with MLL1, JUND, and an MLL1-LEDGF heterodimer.
- Analysis of these structures revealed the binding modes and structural basis for menin's functions.
Main Results:
- Menin possesses a deep pocket that binds peptides from both MLL1 and JUND similarly.
- Menin binding to JUND inhibits its transcriptional activity by blocking JNK-mediated phosphorylation.
- Menin acts as a cofactor for MLL1, promoting transcription by bridging MLL1 to LEDGF on chromatin.
Conclusions:
- Menin's structural adaptability allows it to interact with diverse partners, leading to opposing transcriptional outcomes.
- The menin-JUND interaction suppresses transcription, while the menin-MLL1-LEDGF interaction promotes it.
- These findings clarify menin's role as a molecular adaptor in both tumor suppression and oncogenesis.
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