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Insights into the stereoselectivity of human SETD7 methyltransferase

Human SETD7 methyltransferase (hSETD7) is involved in a wide range of physiological processes, and has been considered as a significant target to develop new drugs. (R)-PFI-2, one hSETD7 inhibitor, could bind to the pocket of substrates with potent (low nanomolar) activity and high selectivity, whil...

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Autores principales: Tang, Bowen, Li, Baicun, Li, Boqun, Qin, Jingbo, Zhao, Junming, Xu, Jianwenn, Qiu, Yingkun, Wu, Zhen, Fang, Meijuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9062083/
https://www.ncbi.nlm.nih.gov/pubmed/35517649
http://dx.doi.org/10.1039/c9ra00190e
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author Tang, Bowen
Li, Baicun
Li, Boqun
Qin, Jingbo
Zhao, Junming
Xu, Jianwenn
Qiu, Yingkun
Wu, Zhen
Fang, Meijuan
author_facet Tang, Bowen
Li, Baicun
Li, Boqun
Qin, Jingbo
Zhao, Junming
Xu, Jianwenn
Qiu, Yingkun
Wu, Zhen
Fang, Meijuan
author_sort Tang, Bowen
collection PubMed
description Human SETD7 methyltransferase (hSETD7) is involved in a wide range of physiological processes, and has been considered as a significant target to develop new drugs. (R)-PFI-2, one hSETD7 inhibitor, could bind to the pocket of substrates with potent (low nanomolar) activity and high selectivity, while its enantiomer (S)-PFI-2 showed 500-fold less activity in IC(50) determination. Why do this pair of enantiomers, with nearly identical structures, exert tremendously different inhibitory activity? We performed a total of 900 ns long-timescale molecular dynamics (MD) simulations and 80 ps hybrid quantum mechanics/molecular mechanics (QM/MM) MD simulations to understand the molecular mechanism of the stereoselectivity of hSETD7. For each SAM/hSETD7/PFI-2 system, we characterized and compared the residual fluctuation of hSETD7, and generated molecular interaction fingerprints (IFP) to exemplify the propensities of SAM/hSETD7-inhibitor interactions. Based on the QM/MM MD, we accurately captured the difference of hydrogen bonds between the SAM/hSETD7/(R)-PFI-2 and SAM/hSETD7/(S)-PFI-2 systems. Especially the strength of the hydrogen bond between G336 and two inhibitors, which determines the stability of the post-SET loop. The energy barrier for (S)-PFI-2 was much bigger than (R)-PFI-2 from global minimum to bioactive conformation as the potential energy surface scanning (PES) showed. Moreover, by estimating the binding affinity and phylogenetic tree analysis, we discovered 16 hotspots were essential for binding both enantiomers but the specific mode of interaction between these hotspots and enantiomorphs is different. Our findings reveal the effect of chirality on the inhibition activity of hSETD7 in detail, and provide valuable information for hSETD7 structure-based drug development.
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spelling pubmed-90620832022-05-04 Insights into the stereoselectivity of human SETD7 methyltransferase Tang, Bowen Li, Baicun Li, Boqun Qin, Jingbo Zhao, Junming Xu, Jianwenn Qiu, Yingkun Wu, Zhen Fang, Meijuan RSC Adv Chemistry Human SETD7 methyltransferase (hSETD7) is involved in a wide range of physiological processes, and has been considered as a significant target to develop new drugs. (R)-PFI-2, one hSETD7 inhibitor, could bind to the pocket of substrates with potent (low nanomolar) activity and high selectivity, while its enantiomer (S)-PFI-2 showed 500-fold less activity in IC(50) determination. Why do this pair of enantiomers, with nearly identical structures, exert tremendously different inhibitory activity? We performed a total of 900 ns long-timescale molecular dynamics (MD) simulations and 80 ps hybrid quantum mechanics/molecular mechanics (QM/MM) MD simulations to understand the molecular mechanism of the stereoselectivity of hSETD7. For each SAM/hSETD7/PFI-2 system, we characterized and compared the residual fluctuation of hSETD7, and generated molecular interaction fingerprints (IFP) to exemplify the propensities of SAM/hSETD7-inhibitor interactions. Based on the QM/MM MD, we accurately captured the difference of hydrogen bonds between the SAM/hSETD7/(R)-PFI-2 and SAM/hSETD7/(S)-PFI-2 systems. Especially the strength of the hydrogen bond between G336 and two inhibitors, which determines the stability of the post-SET loop. The energy barrier for (S)-PFI-2 was much bigger than (R)-PFI-2 from global minimum to bioactive conformation as the potential energy surface scanning (PES) showed. Moreover, by estimating the binding affinity and phylogenetic tree analysis, we discovered 16 hotspots were essential for binding both enantiomers but the specific mode of interaction between these hotspots and enantiomorphs is different. Our findings reveal the effect of chirality on the inhibition activity of hSETD7 in detail, and provide valuable information for hSETD7 structure-based drug development. The Royal Society of Chemistry 2019-03-21 /pmc/articles/PMC9062083/ /pubmed/35517649 http://dx.doi.org/10.1039/c9ra00190e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Tang, Bowen
Li, Baicun
Li, Boqun
Qin, Jingbo
Zhao, Junming
Xu, Jianwenn
Qiu, Yingkun
Wu, Zhen
Fang, Meijuan
Insights into the stereoselectivity of human SETD7 methyltransferase
title Insights into the stereoselectivity of human SETD7 methyltransferase
title_full Insights into the stereoselectivity of human SETD7 methyltransferase
title_fullStr Insights into the stereoselectivity of human SETD7 methyltransferase
title_full_unstemmed Insights into the stereoselectivity of human SETD7 methyltransferase
title_short Insights into the stereoselectivity of human SETD7 methyltransferase
title_sort insights into the stereoselectivity of human setd7 methyltransferase
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9062083/
https://www.ncbi.nlm.nih.gov/pubmed/35517649
http://dx.doi.org/10.1039/c9ra00190e
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