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1.
Contact (Thousand Oaks) ; 7: 25152564241231364, 2024.
Article in English | MEDLINE | ID: mdl-38410695

ABSTRACT

Electron microscopy has played a pivotal role in elucidating the ultrastructure of membrane contact sites between cellular organelles. The advent of cryo-electron microscopy has ushered in the ability to determine atomic models of constituent proteins or protein complexes within sites of membrane contact through single particle analysis. Furthermore, it enables the visualization of the three-dimensional architecture of membrane contact sites, encompassing numerous copies of proteins, whether in vitro reconstituted or directly observed in situ using cryo-electron tomography. Nevertheless, there exists a scarcity of cryo-electron microscopy studies focused on the site of membrane contact and their constitutive proteins. This review provides an overview of the contributions made by cryo-electron microscopy to our understanding of membrane contact sites, outlines the associated limitations, and explores prospects in this field.

2.
Mol Biol Cell ; 34(1): ar2, 2023 01 01.
Article in English | MEDLINE | ID: mdl-36383775

ABSTRACT

The fine regulation of actin polymerization is essential to control cell motility and architecture and to perform essential cellular functions. Formins are key regulators of actin filament assembly, known to processively elongate filament barbed ends and increase their polymerization rate. Different models have been extrapolated to describe the molecular mechanism governing the processive motion of formin FH2 domains at polymerizing barbed ends. Using negative stain electron microscopy, we directly identified for the first time two conformations of the mDia1 formin FH2 domains in interaction with the barbed ends of actin filaments. These conformations agree with the speculated open and closed conformations of the "stair-stepping" model. We observed the FH2 dimers to be in the open conformation for 79% of the data, interacting with the two terminal actin subunits of the barbed end while they interact with three actin subunits in the closed conformation. In addition, we identified and characterized the structure of single FH2 dimers encircling the core of actin filaments, and reveal their ability to spontaneously depart from barbed ends.


Subject(s)
Actins , Microfilament Proteins , Formins , Actins/metabolism , Microfilament Proteins/metabolism , Actin Cytoskeleton/metabolism , Molecular Conformation
3.
Nat Cell Biol ; 22(7): 803-814, 2020 07.
Article in English | MEDLINE | ID: mdl-32572169

ABSTRACT

Cell shape is controlled by the submembranous cortex, an actomyosin network mainly generated by two actin nucleators: the Arp2/3 complex and the formin mDia1. Changes in relative nucleator activity may alter cortical organization, mechanics and cell shape. Here we investigate how nucleation-promoting factors mediate interactions between nucleators. In vitro, the nucleation-promoting factor SPIN90 promotes formation of unbranched filaments by Arp2/3, a process thought to provide the initial filament for generation of dendritic networks. Paradoxically, in cells, SPIN90 appears to favour a formin-dominated cortex. Our in vitro experiments reveal that this feature stems mainly from two mechanisms: efficient recruitment of mDia1 to SPIN90-Arp2/3 nucleated filaments and formation of a ternary SPIN90-Arp2/3-mDia1 complex that greatly enhances filament nucleation. Both mechanisms yield rapidly elongating filaments with mDia1 at their barbed ends and SPIN90-Arp2/3 at their pointed ends. Thus, in networks, SPIN90 lowers branching densities and increases the proportion of long filaments elongated by mDia1.


Subject(s)
Actin Cytoskeleton/physiology , Actin-Related Protein 2-3 Complex/metabolism , Actins/metabolism , Adaptor Proteins, Signal Transducing/metabolism , Formins/metabolism , Melanoma/pathology , Muscle Proteins/metabolism , Actin-Related Protein 2-3 Complex/genetics , Adaptor Proteins, Signal Transducing/genetics , Animals , Blastula/cytology , Blastula/metabolism , Cell Shape , Embryo, Nonmammalian/cytology , Embryo, Nonmammalian/metabolism , Formins/genetics , Humans , Melanoma/genetics , Melanoma/metabolism , Muscle Proteins/genetics , Xenopus laevis/growth & development , Xenopus laevis/metabolism
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