The N-terminus of the prion protein is a toxic effector regulated by the C-terminus.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 28527237.
- Also identified by DOI 10.7554/eLife.23473 and PMC identifier 5469617.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
PrP<sup>C</sup>, the cellular isoform of the prion protein, serves to transduce the neurotoxic effects of PrP<sup>Sc</sup>, the infectious isoform, but how this occurs is mysterious. Here, using a combination of electrophysiological, cellular, and biophysical techniques, we show that the flexible, N-terminal domain of PrP<sup>C</sup> functions as a powerful toxicity-transducing effector whose activity is tightly regulated <i>in cis</i> by the globular C-terminal domain. Ligands binding to the N-terminal domain abolish the spontaneous ionic currents associated with neurotoxic mutants of PrP, and the isolated N-terminal domain induces currents when expressed in the absence of the C-terminal domain. Anti-PrP antibodies targeting epitopes in the C-terminal domain induce currents, and cause degeneration of dendrites on murine hippocampal neurons, effects that entirely dependent on the effector function of the N-terminus. NMR experiments demonstrate intramolecular docking between N- and C-terminal domains of PrP<sup>C</sup>, revealing a novel auto-inhibitory mechanism that regulates the functional activity of PrP<sup>C</sup>.
Medical subject headings
- Homeostasis
- PrPC Proteins
- Prion Proteins