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PDBsum entry 6uby
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Structural protein
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PDB id
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6uby
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Contents |
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(+ 0 more)
370 a.a.
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190 a.a.
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166 a.a.
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164 a.a.
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PDB id:
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| Name: |
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Structural protein
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Title:
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Isolated cofilin bound to an actin filament
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Structure:
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Actin, alpha skeletal muscle. Chain: a, b, c, d, e, f, g, h. Synonym: alpha-actin-1. Cofilin-1. Chain: i. Synonym: 18 kda phosphoprotein,p18,cofilin,non-muscle isoform. Engineered: yes
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Source:
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Oryctolagus cuniculus. Rabbit. Organism_taxid: 9986. Homo sapiens. Human. Organism_taxid: 9606. Gene: cfl1, cfl. Expressed in: escherichia coli. Expression_system_taxid: 562
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Authors:
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A.R.Huehn,J.P.Bibeau,A.C.Schramm,W.Cao,E.M.De La Cruz,C.V.Sindelar
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Key ref:
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A.R.Huehn
et al.
(2020).
Structures of cofilin-induced structural changes reveal local and asymmetric perturbations of actin filaments.
Proc Natl Acad Sci U S A,
117,
1478-1484.
PubMed id:
DOI:
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Date:
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13-Sep-19
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Release date:
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01-Jan-20
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PROCHECK
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Headers
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References
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P68135
(ACTS_RABIT) -
Actin, alpha skeletal muscle from Oryctolagus cuniculus
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Seq: Struc:
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377 a.a.
370 a.a.
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P68135
(ACTS_RABIT) -
Actin, alpha skeletal muscle from Oryctolagus cuniculus
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Seq: Struc:
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377 a.a.
190 a.a.
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Enzyme class 2:
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Chains A, B, C, D, E, F, G, H:
E.C.3.6.4.-
- ?????
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Enzyme class 3:
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Chain I:
E.C.?
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Note, where more than one E.C. class is given (as above), each may
correspond to a different protein domain or, in the case of polyprotein
precursors, to a different mature protein.
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DOI no:
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Proc Natl Acad Sci U S A
117:1478-1484
(2020)
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PubMed id:
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Structures of cofilin-induced structural changes reveal local and asymmetric perturbations of actin filaments.
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A.R.Huehn,
J.P.Bibeau,
A.C.Schramm,
W.Cao,
E.M.De La Cruz,
C.V.Sindelar.
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ABSTRACT
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Members of the cofilin/ADF family of proteins sever actin filaments, increasing
the number of filament ends available for polymerization or depolymerization.
Cofilin binds actin filaments with positive cooperativity, forming clusters of
contiguously bound cofilin along the filament lattice. Filament severing occurs
preferentially at boundaries between bare and cofilin-decorated (cofilactin)
segments and is biased at 1 side of a cluster. A molecular understanding of
cooperative binding and filament severing has been impeded by a lack of
structural data describing boundaries. Here, we apply methods for analyzing
filament cryo-electron microscopy (cryo-EM) data at the single subunit level to
directly investigate the structure of boundaries within partially decorated
cofilactin filaments. Subnanometer resolution maps of isolated, bound cofilin
molecules and an actin-cofilactin boundary indicate that cofilin-induced actin
conformational changes are local and limited to subunits directly contacting
bound cofilin. An isolated, bound cofilin compromises longitudinal filament
contacts of 1 protofilament, consistent with a single cofilin having
filament-severing activity. An individual, bound phosphomimetic (S3D) cofilin
with weak severing activity adopts a unique binding mode that does not perturb
actin structure. Cofilin clusters disrupt both protofilaments, consistent with a
higher severing activity at boundaries compared to single cofilin. Comparison of
these structures indicates that this disruption is substantially greater at
pointed end sides of cofilactin clusters than at the barbed end. These
structures, with the distribution of bound cofilin clusters, suggest that
maximum binding cooperativity is achieved when 2 cofilins occupy adjacent sites.
These results reveal the structural origins of cooperative cofilin binding and
actin filament severing.
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');
}
}
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