Tetanus toxin

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[[Image:Mechanism_of_action_of_tetanospasmin.jpg|thumb|350px|left|Mechanism of Action for Tetanospasmin.<ref> Mechanism of Action of Tetanospasmin (Dr. Arnab K Rana) [image on the internet]. 2005[updated 2005 Dec 26; cited 2011 Apr 20]. Available from: http://en.wikipedia.org/wiki/File:Mechanism_of_action_of_tetanospasmin.gif</ref>]]
[[Image:Mechanism_of_action_of_tetanospasmin.jpg|thumb|350px|left|Mechanism of Action for Tetanospasmin.<ref> Mechanism of Action of Tetanospasmin (Dr. Arnab K Rana) [image on the internet]. 2005[updated 2005 Dec 26; cited 2011 Apr 20]. Available from: http://en.wikipedia.org/wiki/File:Mechanism_of_action_of_tetanospasmin.gif</ref>]]
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== Retrograde Axonal Transport ==
== Retrograde Axonal Transport ==
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[[Image:TeNT.jpg|thumb|200px|left|An overlap of three copies of the TeNT Hc structure. This image helps to illustrate the two separte and distinct domains of the Hc fragment of tetanospasmin.<ref name="hcfrag" />]]
[[Image:TeNT.jpg|thumb|200px|left|An overlap of three copies of the TeNT Hc structure. This image helps to illustrate the two separte and distinct domains of the Hc fragment of tetanospasmin.<ref name="hcfrag" />]]
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Hc has two distinct domains:<ref name="hcfrag"> PMID:11418600</ref>
Hc has two distinct domains:<ref name="hcfrag"> PMID:11418600</ref>
[[Image:GT1-b ganglioside.jpg|thumb|350px|right|Ganglioside GT1-b.<ref name="hcfrag" />]]
[[Image:GT1-b ganglioside.jpg|thumb|350px|right|Ganglioside GT1-b.<ref name="hcfrag" />]]
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1. Jelly-roll (amino end)
1. Jelly-roll (amino end)
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[[Image:GT1-b Ana.jpg|thumb|350px|right|GT1-b analogue which was used to bind to the Hc fragment in this study. The analogue differs from the native GT1-b in that Sia6 is the β-anomer and the ceramide group has been replaced.<ref name="hcfrag" />]]
[[Image:GT1-b Ana.jpg|thumb|350px|right|GT1-b analogue which was used to bind to the Hc fragment in this study. The analogue differs from the native GT1-b in that Sia6 is the β-anomer and the ceramide group has been replaced.<ref name="hcfrag" />]]
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The Hc fragment has two binding sites in the β-trefoil domain:<ref name="hcfrag" />
The Hc fragment has two binding sites in the β-trefoil domain:<ref name="hcfrag" />
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</StructureSection>
==3D structures of tetanus toxin==
==3D structures of tetanus toxin==

Revision as of 09:49, 19 June 2017

PDB ID 1fv2

Drag the structure with the mouse to rotate

3D structures of tetanus toxin

Updated on 19-June-2017


References

  1. Hatheway CL. Toxigenic clostridia. Clin Microbiol Rev. 1990 Jan;3(1):66-98. PMID:2404569
  2. Bizzini B. Tetanus Toxin. Microbiological Reviews.1979 June;43(2):224-236.[1]
  3. Mechanism of Action of Tetanospasmin (Dr. Arnab K Rana) [image on the internet]. 2005[updated 2005 Dec 26; cited 2011 Apr 20]. Available from: http://en.wikipedia.org/wiki/File:Mechanism_of_action_of_tetanospasmin.gif
  4. Lalli G, Schiavo G. Analysis of retrograde transport in motor neurons reveals common endocytic carriers for tetanus toxin and neurotrophin receptor p75NTR. J Cell Biol. 2002 Jan 21;156(2):233-9. Epub 2002 Jan 21. PMID:11807088 doi:10.1083/jcb.200106142
  5. Mocchetti I. Exogenous gangliosides, neuronal plasticity and repair, and the neurotrophins. Cell Mol Life Sci. 2005 Oct;62(19-20):2283-94. PMID:16158191 doi:10.1007/s00018-005-5188-y
  6. 6.0 6.1 Chen C, Fu Z, Kim JJ, Barbieri JT, Baldwin MR. Gangliosides as high affinity receptors for tetanus neurotoxin. J Biol Chem. 2009 Sep 25;284(39):26569-77. Epub 2009 Jul 14. PMID:19602728 doi:10.1074/jbc.M109.027391
  7. 7.0 7.1 7.2 7.3 7.4 7.5 7.6 7.7 7.8 Fotinou C, Emsley P, Black I, Ando H, Ishida H, Kiso M, Sinha KA, Fairweather NF, Isaacs NW. The crystal structure of tetanus toxin Hc fragment complexed with a synthetic GT1b analogue suggests cross-linking between ganglioside receptors and the toxin. J Biol Chem. 2001 Aug 24;276(34):32274-81. Epub 2001 Jun 19. PMID:11418600 doi:10.1074/jbc.M103285200

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