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Targeting Functional Centers of the Ribosome

English · Paperback / Softback

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Description

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This thesis describes research into the mode of function, inhibition, and evolution of the ribosomal catalytic center, the Peptidyl Transferase Center (PTC)--research that has already led to attempts at improving PTC antibiotics. The PhD candidate carried out two parallel studies. One using a combination of X-ray crystallography, biochemistry, molecular biology, and theoretical studies to obtain crystal structures of ribosomal particles with antibiotics that target the PTC, revealing the modes of action, resistance, cross-resistance and discrimination between ribosomes of eubacterial pathogens and eukaryotic hosts. In the second parallel study, the candidate synthesized a ribosomal substructure--one that may represent the minimal entity capable of catalyzing peptide bond formation--shedding light on the origin of the ribosome itself.

List of contents

Introduction.- Methods.- Results.- Discussion.

Summary

This thesis describes research into the mode of function, inhibition, and evolution of the ribosomal catalytic center, the Peptidyl Transferase Center (PTC)--research that has already led to attempts at improving PTC antibiotics. The PhD candidate carried out two parallel studies. One using a combination of X-ray crystallography, biochemistry, molecular biology, and theoretical studies to obtain crystal structures of ribosomal particles with antibiotics that target the PTC, revealing the modes of action, resistance, cross-resistance and discrimination between ribosomes of eubacterial pathogens and eukaryotic hosts. In the second parallel study, the candidate synthesized a ribosomal substructure--one that may represent the minimal entity capable of catalyzing peptide bond formation--shedding light on the origin of the ribosome itself.

Product details

Authors Chen Davidovich
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 06.05.2013
 
EAN 9783642267055
ISBN 978-3-642-26705-5
No. of pages 74
Dimensions 156 mm x 233 mm x 8 mm
Weight 148 g
Illustrations XIV, 74 p.
Series Springer Theses
Springer Theses
Subjects Natural sciences, medicine, IT, technology > Technology > Mechanical engineering, production engineering

B, ORGANIC CHEMISTRY, biochemistry, proteins, Biomedical and Life Sciences, Nucleic acids, Nucleic Acid Chemistry, Protein Science, Protein Biochemistry, Nucleic Acid

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