2021
DOI: 10.1002/ange.202101950
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Synthesis, Characterization, and Nanodisc Formation of Non‐ionic Polymers**

Abstract: Although lipid nanodiscs are increasingly used in the structural studies of membrane proteins, drug delivery and other applications, the interaction between the nanodisc belt and the protein to be reconstituted is a major limitation. To overcome this limitation and to further broaden the scope of nanodiscs, a family of non-ionic amphiphilic polymers synthesized by hydrophobic functionalization of fructo-oligosaccharides/inulin is reported. We show the stability of lipid nanodiscs formed by these polymers again… Show more

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Cited by 5 publications
(8 citation statements)
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“…This is consistent with observations of nanodiscs formed from other belt molecules. 12,15 We then performed temperature-dependent 31 P (Figure 1) and 14 N (Figure 2) solid-state NMR experiments under static conditions to assess the magnetic alignment properties of nanodiscs formed with different DMPC/saponin mass ratios. At 293 K, a single peak appeared near −1 ppm (referenced to H 3 PO 4 ) in the 31 P NMR.…”
Section: T H Imentioning
confidence: 99%
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“…This is consistent with observations of nanodiscs formed from other belt molecules. 12,15 We then performed temperature-dependent 31 P (Figure 1) and 14 N (Figure 2) solid-state NMR experiments under static conditions to assess the magnetic alignment properties of nanodiscs formed with different DMPC/saponin mass ratios. At 293 K, a single peak appeared near −1 ppm (referenced to H 3 PO 4 ) in the 31 P NMR.…”
Section: T H Imentioning
confidence: 99%
“…To demonstrate the utility of saponin nanodiscs for protein structural studies, we used purified saponin nanodiscs as an alignment medium for the measurement of RDCs from 15 Nlabeled cytochrome c. We performed 2D 1 H− 15 N in-phase antiphase HSQC (IPAP-HSQC) at 32 °C to measure NH (scalar ± dipolar) coupling values (Figure 6) in an anisotropic saponin nanodisc-based alignment medium. These couplings were compared to previously measured cytochrome c isotropic J NH couplings to determine the RDCs.…”
Section: T H Imentioning
confidence: 99%
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