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- W2805673985 endingPage "236" @default.
- W2805673985 startingPage "151" @default.
- W2805673985 abstract "Many different chemical structures have been shown to yield amphipols (APols), that is amphipathic polymers that are able to keep individual membrane proteins (MPs) soluble in their native state under the form of small complexes. They have in common to be polydisperse (a consequence of their mode of synthesis, but, a priori, not a requirement), of moderate size (in general ≤20 kDa), and to feature either interspersed or alternating hydrophilic and hydrophobic units or a succession of identical amphiphilic ones. The presence of a large number of hydrophilic moieties is essential to ensuring the solubility of the many hydrophobic groups that will interact with the transmembrane surface of MPs, and the properties of these moieties – such as pH- or calcium-dependent solubility – affect those of APols and MP/APol complexes. In aqueous solutions, most APols self-associate into small, micelle-like particles, of which hydrophobic moieties occupy the core and hydrophilic ones the surface. Whereas individual APol molecules are polydisperse, the particles they assemble into are nearly monodisperse, reflecting the existence of a thermodynamically optimal size. Because APols are relatively large molecules, grafting them with functional groups is generally possible without affecting their solution properties, which has permitted the development of a vast variety of labeled or tagged APols." @default.
- W2805673985 created "2018-06-13" @default.
- W2805673985 creator A5043521883 @default.
- W2805673985 date "2018-01-01" @default.
- W2805673985 modified "2023-09-27" @default.
- W2805673985 title "Chemical Structure, Synthesis, and Physical-Chemical Properties of Amphipols" @default.
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