Subunit composition of a bicomponent toxin: staphylococcal leukocidin forms an octameric transmembrane pore.

Staphylococcal leukocidin pores are formed by the obligatory interaction of two distinct polypeptides, one of class F and one of class S, making them unique in the family of beta-barrel pore-forming toxins (beta-PFTs). By contrast, other beta-PFTs form homo-oligomeric pores; for example, the staphyl...

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Main Authors: Miles, G, Movileanu, L, Bayley, J
Format: Journal article
Language:English
Published: 2002
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author Miles, G
Movileanu, L
Bayley, J
author_facet Miles, G
Movileanu, L
Bayley, J
author_sort Miles, G
collection OXFORD
description Staphylococcal leukocidin pores are formed by the obligatory interaction of two distinct polypeptides, one of class F and one of class S, making them unique in the family of beta-barrel pore-forming toxins (beta-PFTs). By contrast, other beta-PFTs form homo-oligomeric pores; for example, the staphylococcal alpha-hemolysin (alpha HL) pore is a homoheptamer. Here, we deduce the subunit composition of a leukocidin pore by two independent methods: gel shift electrophoresis and site-specific chemical modification during single-channel recording. Four LukF and four LukS subunits coassemble to form an octamer. This result in part explains properties of the leukocidin pore, such as its high conductance compared to the alpha HL pore. It is also pertinent to the mechanism of assembly of beta-PFT pores and suggests new possibilities for engineering these proteins.
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spelling oxford-uuid:53f32b05-a4f2-4adc-8721-309f5c890b6b2022-03-26T16:34:47ZSubunit composition of a bicomponent toxin: staphylococcal leukocidin forms an octameric transmembrane pore.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:53f32b05-a4f2-4adc-8721-309f5c890b6bEnglishSymplectic Elements at Oxford2002Miles, GMovileanu, LBayley, JStaphylococcal leukocidin pores are formed by the obligatory interaction of two distinct polypeptides, one of class F and one of class S, making them unique in the family of beta-barrel pore-forming toxins (beta-PFTs). By contrast, other beta-PFTs form homo-oligomeric pores; for example, the staphylococcal alpha-hemolysin (alpha HL) pore is a homoheptamer. Here, we deduce the subunit composition of a leukocidin pore by two independent methods: gel shift electrophoresis and site-specific chemical modification during single-channel recording. Four LukF and four LukS subunits coassemble to form an octamer. This result in part explains properties of the leukocidin pore, such as its high conductance compared to the alpha HL pore. It is also pertinent to the mechanism of assembly of beta-PFT pores and suggests new possibilities for engineering these proteins.
spellingShingle Miles, G
Movileanu, L
Bayley, J
Subunit composition of a bicomponent toxin: staphylococcal leukocidin forms an octameric transmembrane pore.
title Subunit composition of a bicomponent toxin: staphylococcal leukocidin forms an octameric transmembrane pore.
title_full Subunit composition of a bicomponent toxin: staphylococcal leukocidin forms an octameric transmembrane pore.
title_fullStr Subunit composition of a bicomponent toxin: staphylococcal leukocidin forms an octameric transmembrane pore.
title_full_unstemmed Subunit composition of a bicomponent toxin: staphylococcal leukocidin forms an octameric transmembrane pore.
title_short Subunit composition of a bicomponent toxin: staphylococcal leukocidin forms an octameric transmembrane pore.
title_sort subunit composition of a bicomponent toxin staphylococcal leukocidin forms an octameric transmembrane pore
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