2020
DOI: 10.1016/j.bbamem.2020.183397
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The helix 0 of endophilin modifies membrane material properties and induces local curvature

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Cited by 10 publications
(3 citation statements)
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“…Note that the apparent depth of these holes can be influenced by parameters such as scan size and tip geometry. In previous high-resolution scans, we reported bilayer thicknesses of ~3 nm [56][57][58]. However, based on the apparent hole depth of 2 nm observed in this study, which surpasses half the bilayer's thickness, we can reasonably deduce that the holes induced by HttN traverse the entire bilayer.…”
Section: Popc Bilayerscontrasting
confidence: 41%
See 1 more Smart Citation
“…Note that the apparent depth of these holes can be influenced by parameters such as scan size and tip geometry. In previous high-resolution scans, we reported bilayer thicknesses of ~3 nm [56][57][58]. However, based on the apparent hole depth of 2 nm observed in this study, which surpasses half the bilayer's thickness, we can reasonably deduce that the holes induced by HttN traverse the entire bilayer.…”
Section: Popc Bilayerscontrasting
confidence: 41%
“…In our research, we harnessed the capabilities of liquid-based AFM to examine an assortment of macromolecules and their impact on the topographical and mechanical characteristics of lipid bilayers. Through our studies, we have unveiled a spectrum of membrane alterations, ranging from the formation of nanometer-sized pores [55], subtle interfacial indentations [56], the emergence of micrometer-sized perforations [57,58], and lipid clustering [59].…”
Section: Introductionmentioning
confidence: 99%
“…N-BAR has three major functional regions, including N-terminal amphiphilic helix (H0), amphiphilic helix inserted into helix 1 (H1), and crescent-shaped body formed by the dimerized BAR structural domain. H0 mediates membrane binding, H1 inserts into the membrane and cooperates with the dimerized BAR body to drive membrane curvature ( 26 29 ).…”
Section: Subtypes and Structurementioning
confidence: 99%