Pertussis Toxin-ATP Complex

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==structure==
==structure==
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The protussis toxin is a AB5 toxin consisting of a six-component protein complex. With that in mind, this protein is a hexamer containing a catalytic (S1) subunit that is tightly associated with the pentameric cell-binding component (B-oligomer). The S1 component is a single subunit <scene name='Pertussis_Toxin-ATP_Complex/Subunit_1/3'>S1 (chains A,G)</scene> while the B-oligomer is a pentamer composed of four types of subunits: <scene name='Pertussis_Toxin-ATP_Complex/Subunit_2/2'>S2 (chains B,H)</scene>, <scene name='Pertussis_Toxin-ATP_Complex/Subunit_3/2'>S3 (chainsC,I)</scene>, two copies of <scene name='Pertussis_Toxin-ATP_Complex/Subunit_4/2'>S4 (chains D,E,J,K)</scene>, and <scene name='Pertussis_Toxin-ATP_Complex/Subunit_5/3'>S5 (chains F,L)</scene>.<ref name=Hazes>PMID: 8637000</ref> This B subnit is what binds to the terminal sialic acid residues.
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The protussis toxin is a AB5 toxin consisting of a six-component protein complex. With that in mind, this protein is a hexamer containing a catalytic (S1) subunit that is tightly associated with the pentameric cell-binding component (B-oligomer). The S1 component is a single subunit <scene name='Pertussis_Toxin-ATP_Complex/Subunit_1/3'>S1 (chains A,G)</scene> while the B-oligomer is a pentamer composed of four types of subunits: <scene name='Pertussis_Toxin-ATP_Complex/Subunit_2/3'>chains H and H</scene>, <scene name='Pertussis_Toxin-ATP_Complex/Subunit_3/2'>S3 (chainsC,I)</scene>, two copies of <scene name='Pertussis_Toxin-ATP_Complex/Subunit_4/2'>S4 (chains D,E,J,K)</scene>, and <scene name='Pertussis_Toxin-ATP_Complex/Subunit_5/3'>S5 (chains F,L)</scene>.<ref name=Hazes>PMID: 8637000</ref> This B subnit is what binds to the terminal sialic acid residues.
==Pertussis Toxin activation==
==Pertussis Toxin activation==

Revision as of 19:56, 9 November 2011

Pertussis Toxin-ATP complex (1bcp)

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References

  1. Hazes B, Boodhoo A, Cockle SA, Read RJ. Crystal structure of the pertussis toxin-ATP complex: a molecular sensor. J Mol Biol. 1996 May 17;258(4):661-71. PMID:8637000 doi:10.1006/jmbi.1996.0277

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