TY - JOUR
T1 - Insight into the Structure of the “Unstructured” Tau Protein
AU - Popov, Konstantin I.
AU - Makepeace, Karl A.T.
AU - Petrotchenko, Evgeniy V.
AU - Dokholyan, Nikolay V.
AU - Borchers, Christoph H.
N1 - Publisher Copyright:
© 2019
PY - 2019/11/5
Y1 - 2019/11/5
N2 - Combining structural proteomics experimental data with computational methods is a powerful tool for protein structure prediction. Here, we apply a recently developed approach for de novo protein structure determination based on the incorporation of short-distance crosslinking data as constraints in discrete molecular dynamics simulations (CL-DMD), for the determination of the conformational ensemble of tau protein in solution. The predicted structures were in agreement with surface modification and long-distance crosslinking data. Tau in solution was found as an ensemble of rather compact globular conformations with distinct topology, inter-residue contacts, and a number of transient secondary-structure elements. Regions important for pathological aggregation consistently were found to contain β strands. The determined structures are compatible with the tau protein in solution being a molten globule at near-ground state with persistent residual structural features which we were able to capture by CL-DMD. The predicted structure may facilitate an understanding of the misfolding and oligomerization pathways of the tau protein.
AB - Combining structural proteomics experimental data with computational methods is a powerful tool for protein structure prediction. Here, we apply a recently developed approach for de novo protein structure determination based on the incorporation of short-distance crosslinking data as constraints in discrete molecular dynamics simulations (CL-DMD), for the determination of the conformational ensemble of tau protein in solution. The predicted structures were in agreement with surface modification and long-distance crosslinking data. Tau in solution was found as an ensemble of rather compact globular conformations with distinct topology, inter-residue contacts, and a number of transient secondary-structure elements. Regions important for pathological aggregation consistently were found to contain β strands. The determined structures are compatible with the tau protein in solution being a molten globule at near-ground state with persistent residual structural features which we were able to capture by CL-DMD. The predicted structure may facilitate an understanding of the misfolding and oligomerization pathways of the tau protein.
UR - https://www.scopus.com/pages/publications/85074128666
UR - https://www.scopus.com/pages/publications/85074128666#tab=citedBy
U2 - 10.1016/j.str.2019.09.003
DO - 10.1016/j.str.2019.09.003
M3 - Article
C2 - 31628033
AN - SCOPUS:85074128666
SN - 0969-2126
VL - 27
SP - 1710-1715.e4
JO - Structure
JF - Structure
IS - 11
ER -