Abstract P-25: High-Resolution Cryo-Electron Microscopy Structure of the Staphylococcus Aureus Ribosome Brings to Light New Possible Drug Targets

Background: Antibiotic resistance is a growing worldwide problem. One of the major resistant bacterial pathogens is Staphylococcus aureus, which became a burden of healthcare systems around the world. To overcome the issue, more drug discovery studies are needed. One of the main antibiotic targets i...

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Main Authors: Alexander Golubev, Bulat Fatkhullin, Iskander Khusainov, Shamil Validov, Marat Yusupov, Konstantin Usachev
Format: Article
Language:English
Published: International Medical Research and Development Corporation 2021-06-01
Series:International Journal of Biomedicine
Subjects:
Online Access:http://ijbm.org/articles/v11s1/ijbm_2021_11_s1_p25.pdf
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spelling doaj-f9d073d4a59f48179945523b8ee4f99a2021-06-14T17:59:24ZengInternational Medical Research and Development CorporationInternational Journal of Biomedicine2158-05102158-05292021-06-0111Suppl_1222310.21103/IJBM.11.Suppl_1.P25Abstract P-25: High-Resolution Cryo-Electron Microscopy Structure of the Staphylococcus Aureus Ribosome Brings to Light New Possible Drug TargetsAlexander Golubev0Bulat Fatkhullin1Iskander Khusainov2Shamil Validov3Marat Yusupov4Konstantin Usachev5Département de Biologie et de Génomique Structurales, Institut de Génétique et de Biologie Moléculaire et Cellulaire, Université de Strasbourg, Illkirch, FranceInstitute of Protein Research, Russian Academy of Sciences, Puschino, RussiaDepartment of Molecular Sociology, Max Planck Institute of Biophysics, Frankfurt am Main, GermanyLaboratory of Structural Biology, Institute of Fundamental Medicine and Biology, Kazan Federal University, Kazan, RussiaDépartement de Biologie et de Génomique Structurales, Institut de Génétique et de Biologie Moléculaire et Cellulaire, Université de Strasbourg, Illkirch, FranceLaboratory of Structural Biology, Institute of Fundamental Medicine and Biology, Kazan Federal University, Kazan, RussiaBackground: Antibiotic resistance is a growing worldwide problem. One of the major resistant bacterial pathogens is Staphylococcus aureus, which became a burden of healthcare systems around the world. To overcome the issue, more drug discovery studies are needed. One of the main antibiotic targets is a ribosome – the central hub of protein synthesis. Structural data of the ribosome and its features are a crucial milestone for the effective development of new drugs, especially using structure-based drug design approaches. Apart from many small structural features, ribosome possesses rRNA modifications that play a role in the fine-tuning of protein synthesis. Detailed species-specific structural data of the S. aureus ribosome is also a useful model for understanding the resistance mechanisms. This information could help with the design of new antibiotics and the upgrading of old ones. The data on S. aureus ribosomal RNA modifications and corresponding modification enzymes are very limited. Our aim was to improve the current models of the S. aureus ribosome by determining its structure with functional ligands at a much higher resolution - thereby creating a foundation for structure-based drug design experiments and research of new drug targets. Methods: The S. aureus ribosome complex consists of three components: ribosome, fMet-tRNAfMet, mRNA and 70S ribosome. The complex from purified components was formed in vitro and applied to cryo-EM grids. Data was collected at Titan Krios with Gatan K2 detector (IGBMC, France). The data was processed and modeled in Relion 2.1, Chimera, Coot, and Phenix. Results: We determined the cryo-EM reconstruction at 3.2 Å resolution of the S. aureus ribosome with P-site tRNA, messenger RNA. Based on the experimental map and existing bioinformatic data, we at the first time identified and assigned 10 modifications of S. aureus rRNA. We analyzed the positions of rRNA modifications and their possible functions. Conclusion: In this study, we describe our structure of S. aureus ribosome with functional ligands. The present model is the highest resolution and most precise that is available at the moment. We propose a set of methyltransferases as targets for future drug discovery studies. The proposed methyltransferases and corresponding modifications may play an important role in protein synthesis and its regulation.http://ijbm.org/articles/v11s1/ijbm_2021_11_s1_p25.pdfribosomecryo-emrrna modificationss. aureus
collection DOAJ
language English
format Article
sources DOAJ
author Alexander Golubev
Bulat Fatkhullin
Iskander Khusainov
Shamil Validov
Marat Yusupov
Konstantin Usachev
spellingShingle Alexander Golubev
Bulat Fatkhullin
Iskander Khusainov
Shamil Validov
Marat Yusupov
Konstantin Usachev
Abstract P-25: High-Resolution Cryo-Electron Microscopy Structure of the Staphylococcus Aureus Ribosome Brings to Light New Possible Drug Targets
International Journal of Biomedicine
ribosome
cryo-em
rrna modifications
s. aureus
author_facet Alexander Golubev
Bulat Fatkhullin
Iskander Khusainov
Shamil Validov
Marat Yusupov
Konstantin Usachev
author_sort Alexander Golubev
title Abstract P-25: High-Resolution Cryo-Electron Microscopy Structure of the Staphylococcus Aureus Ribosome Brings to Light New Possible Drug Targets
title_short Abstract P-25: High-Resolution Cryo-Electron Microscopy Structure of the Staphylococcus Aureus Ribosome Brings to Light New Possible Drug Targets
title_full Abstract P-25: High-Resolution Cryo-Electron Microscopy Structure of the Staphylococcus Aureus Ribosome Brings to Light New Possible Drug Targets
title_fullStr Abstract P-25: High-Resolution Cryo-Electron Microscopy Structure of the Staphylococcus Aureus Ribosome Brings to Light New Possible Drug Targets
title_full_unstemmed Abstract P-25: High-Resolution Cryo-Electron Microscopy Structure of the Staphylococcus Aureus Ribosome Brings to Light New Possible Drug Targets
title_sort abstract p-25: high-resolution cryo-electron microscopy structure of the staphylococcus aureus ribosome brings to light new possible drug targets
publisher International Medical Research and Development Corporation
series International Journal of Biomedicine
issn 2158-0510
2158-0529
publishDate 2021-06-01
description Background: Antibiotic resistance is a growing worldwide problem. One of the major resistant bacterial pathogens is Staphylococcus aureus, which became a burden of healthcare systems around the world. To overcome the issue, more drug discovery studies are needed. One of the main antibiotic targets is a ribosome – the central hub of protein synthesis. Structural data of the ribosome and its features are a crucial milestone for the effective development of new drugs, especially using structure-based drug design approaches. Apart from many small structural features, ribosome possesses rRNA modifications that play a role in the fine-tuning of protein synthesis. Detailed species-specific structural data of the S. aureus ribosome is also a useful model for understanding the resistance mechanisms. This information could help with the design of new antibiotics and the upgrading of old ones. The data on S. aureus ribosomal RNA modifications and corresponding modification enzymes are very limited. Our aim was to improve the current models of the S. aureus ribosome by determining its structure with functional ligands at a much higher resolution - thereby creating a foundation for structure-based drug design experiments and research of new drug targets. Methods: The S. aureus ribosome complex consists of three components: ribosome, fMet-tRNAfMet, mRNA and 70S ribosome. The complex from purified components was formed in vitro and applied to cryo-EM grids. Data was collected at Titan Krios with Gatan K2 detector (IGBMC, France). The data was processed and modeled in Relion 2.1, Chimera, Coot, and Phenix. Results: We determined the cryo-EM reconstruction at 3.2 Å resolution of the S. aureus ribosome with P-site tRNA, messenger RNA. Based on the experimental map and existing bioinformatic data, we at the first time identified and assigned 10 modifications of S. aureus rRNA. We analyzed the positions of rRNA modifications and their possible functions. Conclusion: In this study, we describe our structure of S. aureus ribosome with functional ligands. The present model is the highest resolution and most precise that is available at the moment. We propose a set of methyltransferases as targets for future drug discovery studies. The proposed methyltransferases and corresponding modifications may play an important role in protein synthesis and its regulation.
topic ribosome
cryo-em
rrna modifications
s. aureus
url http://ijbm.org/articles/v11s1/ijbm_2021_11_s1_p25.pdf
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