Bottom-up in vitro methods to assay the ultrastructural organization, membrane reshaping, and curvature sensitivity behavior of septins
File(s)2022 JOVE 63889_R3_RE.docx (115.11 KB)
Accepted version
Author(s)
Type
Journal Article
Abstract
Membrane remodeling occurs constantly at the plasma membrane and within cellular organelles. To fully dissect the role of the environment (ionic conditions, protein and lipid compositions, membrane curvature) and the different partners associated with specific membrane reshaping processes, we undertake in vitro bottom-up approaches. In recent years, there has been keen interest in revealing the role of septin proteins associated with major diseases. Septins are essential and ubiquitous cytoskeletal proteins that interact with the plasma membrane. They are implicated in cell division, cell motility, neuro-morphogenesis, and spermiogenesis, among other functions. It is, therefore, important to understand how septins interact and organize at membranes to subsequently induce membrane deformations and how they can be sensitive to specific membrane curvatures. This article aims to decipher the interplay between the ultra-structure of septins at a molecular level and the membrane remodeling occurring at a micron scale. To this end, budding yeast, and mammalian septin complexes were recombinantly expressed and purified. A combination of in vitro assays was then used to analyze the self-assembly of septins at the membrane. Supported lipid bilayers (SLBs), giant unilamellar vesicles (GUVs), large unilamellar vesicles (LUVs), and wavy substrates were used to study the interplay between septin self-assembly, membrane reshaping, and membrane curvature.
Date Issued
2022-08-17
Date Acceptance
2022-08-01
Citation
Journal of Visualized Experiments, 2022, 186 (186), pp.1-19
ISSN
1940-087X
Publisher
MyJove Corporation
Start Page
1
End Page
19
Journal / Book Title
Journal of Visualized Experiments
Volume
186
Issue
186
Copyright Statement
Copyright © 2022 JoVE Journal of Visualized Experiments
Identifier
https://www.webofscience.com/api/gateway?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAMR&KeyUT=WOS:000927873000027&DestLinkType=FullRecord&DestApp=ALL_WOS&UsrCustomerID=1ba7043ffcc86c417c072aa74d649202
Subjects
ACTIN
CYTOSKELETON
DIFFUSION
LIGHT
MICROTUBULE
Multidisciplinary Sciences
PLASMA
PROTEIN
Science & Technology
Science & Technology - Other Topics
Publication Status
Published
Date Publish Online
2022-08-17