Unique structural features of the Mycobacterium ribosome

Protein synthesis in all the living cells is mediated by a large protein-RNA complex called the ribosome. These macromolecular complexes can range from 2.5 (prokaryotes) to 4.2 MDa. (eukaryotes) in size and undergo various conformational transitions during protein synthesis to translate the genetic...

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Main Authors: Kushwaha, Ambuj Kumar, Bhushan, Shashi
Other Authors: School of Biological Sciences
Format: Article
Language:English
Published: 2022
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Online Access:https://hdl.handle.net/10356/161319
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1613192022-08-24T08:40:06Z Unique structural features of the Mycobacterium ribosome Kushwaha, Ambuj Kumar Bhushan, Shashi School of Biological Sciences NTU Institute of Structural Biology Science::Biological sciences Mycobacterium Smegmatis Ribosome Protein synthesis in all the living cells is mediated by a large protein-RNA complex called the ribosome. These macromolecular complexes can range from 2.5 (prokaryotes) to 4.2 MDa. (eukaryotes) in size and undergo various conformational transitions during protein synthesis to translate the genetic code into the nascent polypeptide chains. Recent advances in cryo-electron microscopy (cryo-EM) and image processing methods have provided numerous detailed structures of ribosomes from diverse sources and in different conformational states resolved to near-atomic resolutions. These structures have not only helped in better understanding of the translational mechanism but also revealed species-specific variations or adaptations in the ribosome structures. Structural investigations of the ribosomes from Mycobacterium smegmatis (Msm) and its closely related pathogenic Mycobacterium tuberculosis (Mtb) lead to the identification of two additional ribosomal proteins named as bS22 and bL37 and several unique extensions in ribosomal-protein and ribosomal-RNA. Hibernation Promoting Factor (HPF) bound structure of Msm ribosome, termed as the hibernating ribosome, possibly indicates a new mechanism of ribosome protection during dormancy. These studies enabled the identification of the mycobacteria-specific ribosomal features and provides an opportunity to understand their function and target them for further drug-discovery purposes. Here we review the unique structural features identified in Msm ribosome and their possible implications in comparison to a well-studied Escherichia coli (Ec) ribosome. Ministry of Education (MOE) This work was supported by the Ministry of Education (MOE) of Singapore grants 2017-T1-001-022 (RG34/17) and MOE2017-T2-2- 089. 2022-08-24T08:40:06Z 2022-08-24T08:40:06Z 2020 Journal Article Kushwaha, A. K. & Bhushan, S. (2020). Unique structural features of the Mycobacterium ribosome. Progress in Biophysics and Molecular Biology, 152, 15-24. https://dx.doi.org/10.1016/j.pbiomolbio.2019.12.001 0079-6107 https://hdl.handle.net/10356/161319 10.1016/j.pbiomolbio.2019.12.001 31858996 2-s2.0-85076526392 152 15 24 en 2017-T1-001-022 (RG34/17) MOE2017-T2-2-089 Progress in Biophysics and Molecular Biology © 2019 Elsevier Ltd. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::Biological sciences
Mycobacterium Smegmatis
Ribosome
spellingShingle Science::Biological sciences
Mycobacterium Smegmatis
Ribosome
Kushwaha, Ambuj Kumar
Bhushan, Shashi
Unique structural features of the Mycobacterium ribosome
description Protein synthesis in all the living cells is mediated by a large protein-RNA complex called the ribosome. These macromolecular complexes can range from 2.5 (prokaryotes) to 4.2 MDa. (eukaryotes) in size and undergo various conformational transitions during protein synthesis to translate the genetic code into the nascent polypeptide chains. Recent advances in cryo-electron microscopy (cryo-EM) and image processing methods have provided numerous detailed structures of ribosomes from diverse sources and in different conformational states resolved to near-atomic resolutions. These structures have not only helped in better understanding of the translational mechanism but also revealed species-specific variations or adaptations in the ribosome structures. Structural investigations of the ribosomes from Mycobacterium smegmatis (Msm) and its closely related pathogenic Mycobacterium tuberculosis (Mtb) lead to the identification of two additional ribosomal proteins named as bS22 and bL37 and several unique extensions in ribosomal-protein and ribosomal-RNA. Hibernation Promoting Factor (HPF) bound structure of Msm ribosome, termed as the hibernating ribosome, possibly indicates a new mechanism of ribosome protection during dormancy. These studies enabled the identification of the mycobacteria-specific ribosomal features and provides an opportunity to understand their function and target them for further drug-discovery purposes. Here we review the unique structural features identified in Msm ribosome and their possible implications in comparison to a well-studied Escherichia coli (Ec) ribosome.
author2 School of Biological Sciences
author_facet School of Biological Sciences
Kushwaha, Ambuj Kumar
Bhushan, Shashi
format Article
author Kushwaha, Ambuj Kumar
Bhushan, Shashi
author_sort Kushwaha, Ambuj Kumar
title Unique structural features of the Mycobacterium ribosome
title_short Unique structural features of the Mycobacterium ribosome
title_full Unique structural features of the Mycobacterium ribosome
title_fullStr Unique structural features of the Mycobacterium ribosome
title_full_unstemmed Unique structural features of the Mycobacterium ribosome
title_sort unique structural features of the mycobacterium ribosome
publishDate 2022
url https://hdl.handle.net/10356/161319
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