TY - JOUR
T1 - Structural basis for pore-forming mechanism of staphylococcal α-hemolysin
AU - Sugawara, Takaki
AU - Yamashita, Daichi
AU - Kato, Koji
AU - Peng, Zhao
AU - Ueda, Junki
AU - Kaneko, Jun
AU - Kamio, Yoshiyuki
AU - Tanaka, Yoshikazu
AU - Yao, Min
N1 - Funding Information:
X-ray diffraction experiments were performed at Photon Factory and SPring-8 under proposals 2012G515/2014G022 and 2012A1179/2012B1215/2013A1115/2015A1117/2015B2117, respectively. This work was supported by Grants-in-Aid from the Ministry of Education, Science, Sports and Culture of Japan (Y. T.) Hokkaido University 26102501 , 26291008 , 24000011 .
Publisher Copyright:
© 2015 Elsevier Ltd.
PY - 2015/12/15
Y1 - 2015/12/15
N2 - Staphylococcal α-hemolysin (α-HL) is a β-barrel pore-forming toxin (PFT) expressed by Staphylococcus aureus. α-HL is secreted as a water-soluble monomeric protein, which binds to target membranes and forms membrane-inserted heptameric pores. To explore the pore-forming mechanism of α-HL in detail, we determined the crystal structure of the α-HL monomer and prepore using H35A mutant and W179A/R200A mutant, respectively. Although the overall structure of the monomer was similar to that of other staphylococcal PFTs, a marked difference was observed in the N-terminal amino latch, which bent toward the prestem. Moreover, the prestem was fastened by the cap domain with a key hydrogen bond between Asp45 and Tyr118. Prepore structure showed that the transmembrane region is roughly formed with flexibility, although the upper half of the β-barrel is formed appropriately. Structure comparison among monomer, prepore and pore revealed a series of motions, in which the N-terminal amino latch released upon oligomerization destroys its own key hydrogen bond between Asp45-Tyr118. This action initiated the protrusion of the prestem. Y118F mutant and the N-terminal truncated mutant markedly decreased in the hemolytic activity, indicating the importance of the key hydrogen bond and the N-terminal amino latch on the pore formation. Based on these observations, we proposed a dynamic molecular mechanism of pore formation for α-HL.
AB - Staphylococcal α-hemolysin (α-HL) is a β-barrel pore-forming toxin (PFT) expressed by Staphylococcus aureus. α-HL is secreted as a water-soluble monomeric protein, which binds to target membranes and forms membrane-inserted heptameric pores. To explore the pore-forming mechanism of α-HL in detail, we determined the crystal structure of the α-HL monomer and prepore using H35A mutant and W179A/R200A mutant, respectively. Although the overall structure of the monomer was similar to that of other staphylococcal PFTs, a marked difference was observed in the N-terminal amino latch, which bent toward the prestem. Moreover, the prestem was fastened by the cap domain with a key hydrogen bond between Asp45 and Tyr118. Prepore structure showed that the transmembrane region is roughly formed with flexibility, although the upper half of the β-barrel is formed appropriately. Structure comparison among monomer, prepore and pore revealed a series of motions, in which the N-terminal amino latch released upon oligomerization destroys its own key hydrogen bond between Asp45-Tyr118. This action initiated the protrusion of the prestem. Y118F mutant and the N-terminal truncated mutant markedly decreased in the hemolytic activity, indicating the importance of the key hydrogen bond and the N-terminal amino latch on the pore formation. Based on these observations, we proposed a dynamic molecular mechanism of pore formation for α-HL.
KW - Crystal structure
KW - Pore-forming toxin
KW - Staphylococcal α-hemolysin
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U2 - 10.1016/j.toxicon.2015.09.033
DO - 10.1016/j.toxicon.2015.09.033
M3 - Article
C2 - 26428390
AN - SCOPUS:84946547746
SN - 0041-0101
VL - 108
SP - 226
EP - 231
JO - Toxicon
JF - Toxicon
ER -