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Iron Acquisition by the Genus Mycobacterium [electronic resource] : History, Mechanisms, Role of Siderocalin, Anti-Tuberculosis Drug Development / edited by B. Rowe Byers.

Contributor(s): Material type: TextTextSeries: SpringerBriefs in Molecular SciencePublisher: Heidelberg : Springer International Publishing : Imprint: Springer, 2013Description: V, 92 p. 39 illus., 9 illus. in color. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783319003030
Subject(s): Additional physical formats: Printed edition:: No titleDDC classification:
  • 579 23
LOC classification:
  • QR1-502
Online resources:
Contents:
A History of Iron Metabolism in the Mycobacteria -- Mycobacterial Iron Uptake Mechanisms -- Siderocalin Combats Mycobacterial Infections -- Design of Anti-TB Drugs Using the Iron Uptake Platform.
In: Springer eBooksSummary: Iron Acquisition by the Genus Mycobacterium summarizes the early evidence for the necessity of iron in mycobacteria and the discovery of the mycobacterial siderophores mycobactin, carboxymycobactin, and exochelin. The structural characterization of the mycobacterial siderophores is described.  The genes so far identified as essential for iron acquisition and maintenance of an infection by pathogenic mycobacteria are discussed.  The potential role of siderocalin in iron gathering by M. tuberculosis is featured. Because new drugs for M. tuberculosis are needed, this brief also emphasizes the design of antibiotics that interfere with siderophore biosynthesis and the use of siderophore analogs and/or conjugates.
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A History of Iron Metabolism in the Mycobacteria -- Mycobacterial Iron Uptake Mechanisms -- Siderocalin Combats Mycobacterial Infections -- Design of Anti-TB Drugs Using the Iron Uptake Platform.

Iron Acquisition by the Genus Mycobacterium summarizes the early evidence for the necessity of iron in mycobacteria and the discovery of the mycobacterial siderophores mycobactin, carboxymycobactin, and exochelin. The structural characterization of the mycobacterial siderophores is described.  The genes so far identified as essential for iron acquisition and maintenance of an infection by pathogenic mycobacteria are discussed.  The potential role of siderocalin in iron gathering by M. tuberculosis is featured. Because new drugs for M. tuberculosis are needed, this brief also emphasizes the design of antibiotics that interfere with siderophore biosynthesis and the use of siderophore analogs and/or conjugates.

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