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Exploring the Active Center of the LSD1/CoREST Complex by Molecular Dynamics Simulation Utilizing Its Co-crystallized
Waleed A Zalloum1, Hiba M Zalloum2
1Department of Pharmacy, Faculty of Health Science, American University of Madaba , P.O. Box 2882, Amman 11821, Jordan.
Abstract:
Epigenetic targeting of cancer is a recent effort to manipulate the gene without destroying the genetic material. Lysine-specific demethylase 1 (LSD1) is one of the enzymes associated with the chromatin for post-translational modifications, where it demethylates lysine amino acid in the chromatin H3 tail. Many studies showed that inhibiting LSD1 could potentially be used to treat cancer epigenetically. LSD1 is associated with its corepressor protein CoREST, and it uses tetrahydrofolate as a co-factor to accept CH2 from the demethylation process. In this study, the co-crystallized co-factor tetrahydrofolate was utilized to determine possible binding regions in the active center of the LSD1/CoREST complex. Also, the flexibility of the complex has been investigated by molecular dynamics simulation and subsequent analysis by clustering and principal component analysis. This research supported other studies and showed that LSD1/CoREST complex exists in two main conformational structures: open and closed. Furthermore, this study showed that tetrahydrofolate stably binds to the LSD1/CoREST complex, in its open conformation, at its entrance. It then binds to the core of the complex, inducing the closed conformation. Furthermore, the interactions of tetrahydrofolate to these two binding regions and the corresponding binding mode of tetrahydrofolate were investigated to be used in structure-based drug design.
Insights
Lysine-specific demethylase 1 (LSD1) is a cancer treatment target. This study reveals how tetrahydrofolate binds to LSD1/CoREST, influencing its structure for potential drug design.
Area of Science:
- Biochemistry
- Structural Biology
- Cancer Research
Background:
- Epigenetic cancer therapy aims to alter gene expression without damaging DNA.
- Lysine-specific demethylase 1 (LSD1) is an enzyme crucial for epigenetic regulation, involved in cancer progression.
- LSD1 functions with its corepressor CoREST and utilizes tetrahydrofolate as a cofactor.
Purpose of the Study:
- To investigate the binding interactions of tetrahydrofolate within the LSD1/CoREST complex.
- To understand the conformational dynamics of the LSD1/CoREST complex.
- To provide insights for structure-based drug design targeting LSD1.
Main Methods:
- Co-crystallization of LSD1/CoREST with tetrahydrofolate.
- Molecular dynamics simulations to analyze complex flexibility.
- Clustering and principal component analysis for conformational assessment.
Main Results:
- The LSD1/CoREST complex exhibits two primary conformations: open and closed.
- Tetrahydrofolate initially binds at the entrance of the open conformation.
- Binding of tetrahydrofolate induces a conformational change to the closed state, stabilizing the complex.
Conclusions:
- Tetrahydrofolate binding plays a critical role in modulating LSD1/CoREST complex conformation.
- Understanding these binding dynamics is essential for developing novel epigenetic cancer therapies.
- The study provides a structural basis for designing LSD1 inhibitors.
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