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9QPY

Structure of the Complement classical and lectin pathway C3 convertase

Summary for 9QPY
Entry DOI10.2210/pdb9qpy/pdb
Related9QJ4 9QJ5 9QK2
EMDB information53288
DescriptorComplement C4-A, Anti-C4b nanobody B12, Complement C2, ... (5 entities in total)
Functional Keywordsc3 convertase, complement classical pathway, convertase complex, enzyme, immune system
Biological sourceLama glama
More
Total number of polymer chains5
Total formula weight677223.02
Authors
De la O Becerra, K.I.,Brondijk, T.H.C.,Gros, P. (deposition date: 2025-03-31, release date: 2025-12-24, Last modification date: 2026-03-04)
Primary citationDe la O Becerra, K.I.,Brondijk, T.H.C.,Serna Martin, I.,Gros, P.
Structural insights into C3 convertase activity of the classical pathway of complement.
Nat Commun, 17:993-993, 2025
Cited by
PubMed Abstract: Immune protection by the complement system depends on C3 cleavage by C3 convertases that is critical to all three activation pathways. Structural data on convertase formation in the classical pathway and on C3-substrate binding to convertases is lacking. We present the cryo-EM structures of the proconvertase (C4b2), convertase (C4b2b), and convertase-substrate complex (C4b2b-C3) of the classical pathway. The data show that C2 and C4b form proconvertases and convertases like factor B and C3b of the alternative pathway. Substrate C3 binds C4b of the convertase through two interfaces: one also found in the SCIN-inhibited C3bBb dimer, and another facilitated by conformational changes in C3. Bending of C3 and swinging of the C2 protease bring the C3-scissile loop into the active site. The second, charged, C4b-interaction site favors C3- substrate binding, but upon cleavage repels product C3b. Thus, a charge switch-over mechanism effects the catalytic turnover of the convertases producing opsonin C3b.
PubMed: 41413058
DOI: 10.1038/s41467-025-67730-4
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (4.3 Å)
Structure validation

250059

건을2026-03-04부터공개중

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