4.6 Article

A polymetamorphic protein

期刊

PROTEIN SCIENCE
卷 22, 期 5, 页码 641-649

出版社

WILEY-BLACKWELL
DOI: 10.1002/pro.2248

关键词

sequence-structure relationship; structural degeneracy; polar-to-hydrophobic substitution; structural evolution; fold switching

资金

  1. National Institute of Health [GM066806, GM008804]
  2. NSF [DBI 0923551]
  3. University of Nebraska and Nebraska Tobacco Settlement Biomedical Research Development Fund
  4. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [R01GM066806, T32GM008804] Funding Source: NIH RePORTER
  5. Div Of Biological Infrastructure [1342108] Funding Source: National Science Foundation

向作者/读者索取更多资源

Arc repressor is a homodimeric protein with a ribbon-helix-helix fold. A single polar-to-hydrophobic substitution (N11L) at a solvent-exposed position leads to population of an alternate dimeric fold in which 3(10) helices replace a beta-sheet. Here we find that the variant Q9V/N11L/R13V (S-VLV), with two additional polar-to-hydrophobic surface mutations in the same beta-sheet, forms a highly stable, reversibly folded octamer with approximately half the alpha-helical content of wild-type Arc. At low protein concentration and low ionic strength, S-VLV also populates both dimeric topologies previously observed for N11L, as judged by NMR chemical shift comparisons. Thus, accumulation of simple hydrophobic mutations in Arc progressively reduces fold specificity, leading first to a sequence with two folds and then to a manifold bridge sequence with at least three different topologies. Residues 9-14 of S-VLV form a highly hydrophobic stretch that is predicted to be amyloidogenic, but we do not observe aggregates of higher order than octamer. Increases in sequence hydrophobicity can promote amyloid aggregation but also exert broader and more complex effects on fold specificity. Altered native folds, changes in fold coupled to oligomerization, toxic pre-amyloid oligomers, and amyloid fibrils may represent a near continuum of accessible alternatives in protein structure space.

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