7Q8S image
Deposition Date 2021-11-11
Release Date 2022-05-18
Last Version Date 2024-07-17
Entry Detail
PDB ID:
7Q8S
Title:
Leishmania major ADP-actin filament decorated with Leishmania major cofilin
Biological Source:
Source Organism:
Host Organism:
Method Details:
Experimental Method:
Resolution:
3.40 Å
Aggregation State:
FILAMENT
Reconstruction Method:
HELICAL
Macromolecular Entities
Polymer Type:polypeptide(L)
Molecule:Actin
Chain IDs:A, C, E (auth: D), G (auth: E), I (auth: F)
Chain Length:376
Number of Molecules:5
Biological Source:Leishmania major
Polymer Type:polypeptide(L)
Molecule:ADF/Cofilin
Gene (Uniprot):LMJF_29_0510
Chain IDs:B, D (auth: G), F (auth: H), H (auth: I), J
Chain Length:138
Number of Molecules:5
Biological Source:Leishmania major
Primary Citation
Structural basis of rapid actin dynamics in the evolutionarily divergent Leishmania parasite.
Nat Commun 13 3442 3442 (2022)
PMID: 35705539 DOI: 10.1038/s41467-022-31068-y

Abstact

Actin polymerization generates forces for cellular processes throughout the eukaryotic kingdom, but our understanding of the 'ancient' actin turnover machineries is limited. We show that, despite > 1 billion years of evolution, pathogenic Leishmania major parasite and mammalian actins share the same overall fold and co-polymerize with each other. Interestingly, Leishmania harbors a simple actin-regulatory machinery that lacks cofilin 'cofactors', which accelerate filament disassembly in higher eukaryotes. By applying single-filament biochemistry we discovered that, compared to mammalian proteins, Leishmania actin filaments depolymerize more rapidly from both ends, and are severed > 100-fold more efficiently by cofilin. Our high-resolution cryo-EM structures of Leishmania ADP-, ADP-Pi- and cofilin-actin filaments identify specific features at actin subunit interfaces and cofilin-actin interactions that explain the unusually rapid dynamics of parasite actin filaments. Our findings reveal how divergent parasites achieve rapid actin dynamics using a remarkably simple set of actin-binding proteins, and elucidate evolution of the actin cytoskeleton.

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