Click here to close Hello! We notice that you are using Internet Explorer, which is not supported by Xenbase and may cause the site to display incorrectly. We suggest using a current version of Chrome, FireFox, or Safari.
XB-ART-60548
Nano Lett 2024 Feb 14;246:1825-1834. doi: 10.1021/acs.nanolett.3c02742.
Show Gene links Show Anatomy links

Controlling Physical and Biochemical Parameters of Actin Nucleation Using a Patterned Model Lipid Membrane.

Yamazaki Y , Miyata Y , Morigaki K , Miyazaki M .


???displayArticle.abstract???
Self-assembly of nanoscale actin cytoskeletal proteins into filamentous networks requires organizing actin nucleation areas on the plasma membrane through recruiting actin nucleators and nucleation-promoting factors (NPFs) to the areas. To investigate impacts of the nucleation geometry on actin network assembly, we localized NPF or nucleator on defined micropatterns of laterally mobile lipid bilayers confined in a framework of a polymerized lipid bilayer. We demonstrated that actin network assembly in purified protein mixtures was confined on NPF- or nucleator-localized fluid bilayers. By controlling the shape and size of nucleation areas as well as the density and types of localized NPFs and nucleators, we showed that these parameters regulate actin network architectures. Actin network assembly in Xenopus egg extracts was also spatially controlled by patterning bilayers containing phosphatidylinositol 4,5-bisphoshate (PI(4,5)P2), an essential lipid signaling mediator. Therefore, the system provides a promising platform to investigate the physical and biochemical principles for actin network assembly.

???displayArticle.pubmedLink??? 38294155
???displayArticle.link??? Nano Lett


Species referenced: Xenopus