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Polylysine induces an antiparallel actin dimer that nucleates filament assembly: crystal structure at 3.5-A resolution. | LitMetric

AI Article Synopsis

  • An antiparallel actin dimer is identified as a key intermediate in the process of actin filament nucleation, influenced by latrunculin A.
  • The study shows that latrunculin A halts actin polymerization by stabilizing these dimers, which can be detected through fluorescence when made with pyrene-labeled actin.
  • The crystallographic analysis reveals a 3.5-A resolution structure of the polylysine-actin-latrunculin A complex, confirming the dimer's antiparallel arrangement and suggesting how these dimers can lead to the formation of filamentous actin structures.

Article Abstract

An antiparallel actin dimer has been proposed to be an intermediate species during actin filament nucleation. We now show that latrunculin A, a marine natural product that inhibits actin polymerization, arrests polylysine-induced nucleation at the level of an antiparallel dimer, resulting in its accumulation. These dimers, when composed of pyrene-labeled actin subunits, give rise to a fluorescent excimer, permitting detection during polymerization in vitro. We report the crystallographic structure of the polylysine-actin-latrunculin A complex at 3.5-A resolution. The non-crystallographic contact is consistent with a dimeric structure and confirms the antiparallel orientation of its subunits. The crystallographic contacts reveal that the mobile DNase I binding loop of one subunit of a symmetry-related antiparallel actin dimer is partially stabilized in the interface between the two subunits of a second antiparallel dimer. These results provide a potential explanation for the paradoxical nucleation of actin filaments that have exclusively parallel subunits by a dimer containing antiparallel subunits.

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Source
http://dx.doi.org/10.1074/jbc.M201371200DOI Listing

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