4.6 Article

Structure and conformational dynamics of Clostridioides difficile toxin A

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LIFE SCIENCE ALLIANCE
卷 5, 期 6, 页码 -

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LIFE SCIENCE ALLIANCE LLC
DOI: 10.26508/lsa.202201383

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  1. National Institute of Allergy and Infectious Diseases (NIAID) [R01AI12570, R01AI158 503, R21AI15609 2, R21AI163178, R01AI13238 7, R01AI139 087]
  2. National Institute of Mental Health (NIMH) [R01MH081923]
  3. National Institute of General Medical Sciences (NIGMS) [R01GM074830, R01GM130144]
  4. Burroughs Wellcome Fund
  5. National Institute of General Medical Sciences [P30 GM124165]
  6. U.S. DOE [DE-AC02-06CH11357]

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This study reports the crystal structure of Clostridioides difficile toxin A (TcdA), revealing its dynamic structure and pH-dependency. The study also identifies a small globular subdomain and the CROPs domain that protect the pore-forming region of TcdA at neutral pH. Furthermore, a rationally designed mutation drastically reduces the cytotoxicity of the toxin.
Clostridioides difficile toxin A and B (TcdA and TcdB) are two major virulence factors responsible for diseases associated with C. difficile infection (CDI). Here, we report the 3.18-angstrom resolution crystal structure of a TcdA fragment (residues L843-T2481), which advances our understanding of the complete structure of TcdA holotoxin. Our structural analysis, together with complementary single molecule FRET and limited proteolysis studies, reveal that TcdA adopts a dynamic structure and its CROPs domain can sample a spectrum of open and closed conformations in a pH-dependent manner. Furthermore, a small globular subdomain (SGS) and the CROPs protect the pore-forming region of TcdA in the closed state at neutral pH, which could contribute to modulating the pH-dependent pore formation of TcdA. A rationally designed TcdA mutation that trapped the CROPs in the closed conformation showed drastically reduced cytotoxicity. Taken together, these studies shed new lights into the conformational dynamics of TcdA and its roles in TcdA intoxication.

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