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Organization and coordinated assembly of the type III secretion export apparatus.


ABSTRACT: Type III protein secretion systems are unique bacterial nanomachines with the capacity to deliver bacterial effector proteins into eukaryotic cells. These systems are critical to the biology of many pathogenic or symbiotic bacteria for insects, plants, animals, and humans. Essential components of these systems are multiprotein envelope-associated organelles known as the needle complex and a group of membrane proteins that compose the so-called export apparatus. Here, we show that components of the export apparatus associate intimately with the needle complex, forming a structure that can be visualized by cryo-electron microscopy. We also show that formation of the needle complex base is initiated at the export apparatus and that, in the absence of export apparatus components, there is a significant reduction in the levels of needle complex base assembly. Our results show a substantial coordination in the assembly of the two central elements of type III secretion machines.

SUBMITTER: Wagner S 

PROVIDER: S-EPMC2955140 | biostudies-other | 2010 Oct

REPOSITORIES: biostudies-other

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Organization and coordinated assembly of the type III secretion export apparatus.

Wagner Samuel S   Königsmaier Lisa L   Lara-Tejero María M   Lefebre Matthew M   Marlovits Thomas C TC   Galán Jorge E JE  

Proceedings of the National Academy of Sciences of the United States of America 20100927 41


Type III protein secretion systems are unique bacterial nanomachines with the capacity to deliver bacterial effector proteins into eukaryotic cells. These systems are critical to the biology of many pathogenic or symbiotic bacteria for insects, plants, animals, and humans. Essential components of these systems are multiprotein envelope-associated organelles known as the needle complex and a group of membrane proteins that compose the so-called export apparatus. Here, we show that components of t  ...[more]

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