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An efficient method and device for transfer of semisolid materials into solid-state NMR spectroscopy rotors.


ABSTRACT: The study of mass-limited biological samples by magic angle spinning (MAS) solid-state NMR spectroscopy critically relies upon the high-yield transfer of material from a biological preparation into the MAS rotor. This issue is particularly important for maintaining biological activity and hydration of semi-solid samples such as membrane proteins in lipid bilayers, pharmaceutical formulations, microcrystalline proteins and protein fibrils. Here we present protocols and designs for rotor-packing devices specifically suited for packing hydrated samples into Pencil-style 1.6 mm, 3.2 mm standard, and 3.2 mm limited speed MAS rotors. The devices are modular and therefore readily adaptable to other rotor and/or ultracentrifugation tube geometries.

SUBMITTER: Hisao GS 

PROVIDER: S-EPMC4818695 | biostudies-other | 2016 Apr

REPOSITORIES: biostudies-other

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An efficient method and device for transfer of semisolid materials into solid-state NMR spectroscopy rotors.

Hisao Grant S GS   Harland Michael A MA   Brown Robert A RA   Berthold Deborah A DA   Wilson Thomas E TE   Rienstra Chad M CM  

Journal of magnetic resonance (San Diego, Calif. : 1997) 20160129


The study of mass-limited biological samples by magic angle spinning (MAS) solid-state NMR spectroscopy critically relies upon the high-yield transfer of material from a biological preparation into the MAS rotor. This issue is particularly important for maintaining biological activity and hydration of semi-solid samples such as membrane proteins in lipid bilayers, pharmaceutical formulations, microcrystalline proteins and protein fibrils. Here we present protocols and designs for rotor-packing d  ...[more]

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