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XB-ART-54825
Proc Natl Acad Sci U S A 2017 Feb 14;1147:E1111-E1117. doi: 10.1073/pnas.1620293114.
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Toxic PRn poly-dipeptides encoded by the C9orf72 repeat expansion block nuclear import and export.

Shi KY , Mori E , Nizami ZF , Lin Y , Kato M , Xiang S , Wu LC , Ding M , Yu Y , Gall JG , McKnight SL .


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The toxic proline:arginine (PRn) poly-dipeptide encoded by the (GGGGCC)n repeat expansion in the C9orf72 form of heritable amyotrophic lateral sclerosis (ALS) binds to the central channel of the nuclear pore and inhibits the movement of macromolecules into and out of the nucleus. The PRn poly-dipeptide binds to polymeric forms of the phenylalanine:glycine (FG) repeat domain, which is shared by several proteins of the nuclear pore complex, including those in the central channel. A method of chemical footprinting was used to characterize labile, cross-β polymers formed from the FG domain of the Nup54 protein. Mutations within the footprinted region of Nup54 polymers blocked both polymerization and binding by the PRn poly-dipeptide. The aliphatic alcohol 1,6-hexanediol melted FG domain polymers in vitro and reversed PRn-mediated enhancement of the nuclear pore permeability barrier. These data suggest that toxicity of the PRn poly-dipeptide results in part from its ability to lock the FG repeats of nuclear pore proteins in the polymerized state. Our study offers a mechanistic interpretation of PRn poly-dipeptide toxicity in the context of a prominent form of ALS.

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Species referenced: Xenopus laevis
Genes referenced: c1h9orf72 nup54 nup98 sod1

References [+] :
Adam, Nuclear protein import in permeabilized mammalian cells requires soluble cytoplasmic factors. 1990, Pubmed, Xenbase