[English] 日本語
Yorodumi Papers
- Database of articles cited by EMDB/PDB/SASBDB data -

+
Search query

Keywords
Structure methods
Author
Journal
IF

-
Structure paper

TitleThe pod components of the Shigella T3SS sorting platform accommodate multiple copies of Spa33 (SctQ).
Journal, issue, pagesPLoS Pathog, Vol. 22, Issue 9, Page e1014592, Year 2026
Publish dateSep 21, 2026
AuthorsSean K Whittier / Shoichi Tachiyama / Samira Heydari / Wendy L Picking / Jun Liu / William D Picking /
PubMed AbstractThe bacterial type III secretion system (T3SS) uses a membrane-embedded injectisome assembly to export effector proteins into host cells. While atomic-level structural details have been revealed for ...The bacterial type III secretion system (T3SS) uses a membrane-embedded injectisome assembly to export effector proteins into host cells. While atomic-level structural details have been revealed for much of the T3SS apparatus, the model of the cytoplasmic sorting platform remains largely low-resolution. A central structural element of the sorting platform is the so-called "pod" protein, SctQ, which anchors the sorting platform to the inner membrane via interaction with the adaptor protein SctK, and connects to the central ATPase via the spoke protein SctL. SctQ proteins also interact with alternatively translated homodimers of their C-terminal SPOA2 domains. Low resolution electron density maps have provided an outline of the sorting platform architecture, and fluorescence microscopy studies have suggested a 1:4:2 SctK:SctQ:SctL stoichiometry. While there are experimental and AlphaFold structures of individual components and complexes of the sorting platform pod, there is currently no model for the pod structure that adequately fits the electron density or accounts for the proposed stoichiometry. Here we use AlphaFold to generate a model of the upper portion of the Shigella pod complex in which two copies of the SctQ protein, Spa33, bind the adaptor protein MxiK, with each copy of Spa33 bound to an alternately translated SPOA2-SPOA2 domain. We show through mutation of energetically critical interface residues, predicted by computational mutant scanning, that both Spa33 binding sites on MxiK are required for T3SS activity in Shigella flexneri, as well as binding of Spa33 to the SPOA2-SPOA2 homodimer. We find that this model fits well to the upper two-thirds of the pod electron density, albeit in a manner that places the protein components slightly closer to the inner membrane than traditionally presented. Further, cryogenic electron tomography shows Spa33/MxiK interface mutant sorting platforms are destabilized and lack clear density for the SctL spoke protein MxiN and central ATPase Spa47, while Spa33/SPOA2-SPOA2 interaction mutants are further disrupted and lack clear lower pod density. The density for the lower portion of the sorting platform pod, thought to arise from Spa33 and MxiN, remains unmodeled, largely due to the inability of AlphaFold to confidently predict the structure of MxiN or MxiN complexes. However, we show that, allowing for potential conformational rearrangements, the pod can accommodate three full-length copies of Spa33 in a manner that fills some of the lower electron density. How a potential fourth copy of Spa33 could occupy the remaining density with MxiN remains unclear.
External linksPLoS Pathog / PubMed:42766667 / PubMed Central
MethodsEM (subtomogram averaging)
Resolution32.3 - 42.9 Å
Structure data

EMDB-75996: In-situ structure of the Shigella injectisome from spa47 K165A mutant
Method: EM (subtomogram averaging) / Resolution: 33.8 Å

EMDB-75997: In-situ structure of the Shigella injectisome from spa33 F67A/F70A mutant
Method: EM (subtomogram averaging) / Resolution: 32.3 Å

EMDB-75998: In-situ structure of the Shigella injectisome from spa33 F70D mutant
Method: EM (subtomogram averaging) / Resolution: 38.3 Å

EMDB-75999: In-situ structure of the Shigella injectisome from mxiK L46D mutant
Method: EM (subtomogram averaging) / Resolution: 37.4 Å

EMDB-76000: In-situ structure of the Shigella injectisome from spa33 F219D/Y221A mutant
Method: EM (subtomogram averaging) / Resolution: 42.9 Å

Source
  • Shigella flexneri (bacteria)

+
About Yorodumi Papers

-
News

-
Feb 9, 2022. New format data for meta-information of EMDB entries

New format data for meta-information of EMDB entries

  • Version 3 of the EMDB header file is now the official format.
  • The previous official version 1.9 will be removed from the archive.

Related info.:EMDB header

External links:wwPDB to switch to version 3 of the EMDB data model

-
Aug 12, 2020. Covid-19 info

Covid-19 info

URL: https://pdbj.org/emnavi/covid19.php

New page: Covid-19 featured information page in EM Navigator.

Related info.:Covid-19 info / Mar 5, 2020. Novel coronavirus structure data

+
Mar 5, 2020. Novel coronavirus structure data

Novel coronavirus structure data

Related info.:Yorodumi Speices / Aug 12, 2020. Covid-19 info

External links:COVID-19 featured content - PDBj / Molecule of the Month (242):Coronavirus Proteases

+
Jan 31, 2019. EMDB accession codes are about to change! (news from PDBe EMDB page)

EMDB accession codes are about to change! (news from PDBe EMDB page)

  • The allocation of 4 digits for EMDB accession codes will soon come to an end. Whilst these codes will remain in use, new EMDB accession codes will include an additional digit and will expand incrementally as the available range of codes is exhausted. The current 4-digit format prefixed with “EMD-” (i.e. EMD-XXXX) will advance to a 5-digit format (i.e. EMD-XXXXX), and so on. It is currently estimated that the 4-digit codes will be depleted around Spring 2019, at which point the 5-digit format will come into force.
  • The EM Navigator/Yorodumi systems omit the EMD- prefix.

Related info.:Q: What is EMD? / ID/Accession-code notation in Yorodumi/EM Navigator

External links:EMDB Accession Codes are Changing Soon! / Contact to PDBj

+
Jul 12, 2017. Major update of PDB

Major update of PDB

  • wwPDB released updated PDB data conforming to the new PDBx/mmCIF dictionary.
  • This is a major update changing the version number from 4 to 5, and with Remediation, in which all the entries are updated.
  • In this update, many items about electron microscopy experimental information are reorganized (e.g. em_software).
  • Now, EM Navigator and Yorodumi are based on the updated data.

External links:wwPDB Remediation / Enriched Model Files Conforming to OneDep Data Standards Now Available in the PDB FTP Archive

-
Yorodumi Papers

Database of articles cited by EMDB/PDB/SASBDB data

  • Database of articles cited by EMDB, PDB, and SASBDB entries
  • Using PubMed data

Related info.:EMDB / PDB / SASBDB / Yorodumi / EMN Papers / Changes in new EM Navigator and Yorodumi

Read more