In situ structure of actin remodeling during glucose-stimulated insulin secretion using cryo-electron tomography

Author:

Li Weimin,Li Angdi,Yu Bing,Zhang Xiaoxiao,Liu Xiaoyan,White Kate L.,Stevens Raymond C.,Baumeister WolfgangORCID,Sali AndrejORCID,Jasnin MarionORCID,Sun LipingORCID

Abstract

AbstractActin mediates insulin secretion in pancreatic β-cells through remodeling. Hampered by limited resolution, previous studies have offered an ambiguous depiction as depolymerization and repolymerization. We report the in situ structure of actin remodeling in INS-1E β-cells during glucose-stimulated insulin secretion at nanoscale resolution. After remodeling, the actin filament network at the cell periphery exhibits three marked differences: 12% of actin filaments reorient quasi-orthogonally to the ventral membrane; the filament network mainly remains as cell-stabilizing bundles but partially reconfigures into a less compact arrangement; actin filaments anchored to the ventral membrane reorganize from a “netlike” to a “blooming” architecture. Furthermore, the density of actin filaments and microtubules around insulin secretory granules decreases, while actin filaments and microtubules become more densely packed. The actin filament network after remodeling potentially precedes the transport and release of insulin secretory granules. These findings advance our understanding of actin remodeling and its role in glucose-stimulated insulin secretion.

Funder

Shanghai Frontiers Science Center for Biomacromolecules and Precision Medicine at ShanghaiTech University

Foundation for the National Institutes of Health

Publisher

Springer Science and Business Media LLC

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