Molecular basis for diversification of yeast prion strain conformation

被引:35
|
作者
Ohhashi, Yumiko [1 ,2 ]
Yamaguchi, Yoshiki [3 ]
Kurahashi, Hiroshi [1 ]
Kamatari, Yuji O. [4 ]
Sugiyama, Shinju [1 ,5 ]
Uluca, Boran [6 ,7 ]
Piechatzek, Timo [6 ,7 ]
Komi, Yusuke [1 ]
Shida, Toshinobu [1 ,5 ]
Mueller, Henrik [6 ,7 ]
Hanashima, Shinya [3 ,8 ]
Heise, Henrike [6 ,7 ]
Kuwata, Kazuo [9 ]
Tanaka, Motomasa [1 ,5 ]
机构
[1] RIKEN, Brain Sci Inst, Lab Prot Conformat Dis, Wako, Saitama 3510198, Japan
[2] Tokyo Univ Sci, Dept Appl Chem, Shinjuku Ku, Tokyo 1628601, Japan
[3] RIKEN, Max Planck Joint Res Ctr, Struct Glycobiol Team, Wako, Saitama 3510198, Japan
[4] Gifu Univ, Life Sci Res Ctr, Gifu 5011193, Japan
[5] Tokyo Inst Technol, Sch Life Sci & Technol, Midori Ku, Yokohama, Kanagawa 2268503, Japan
[6] Univ Dusseldorf, Inst Phys Biol, D-40225 Dusseldorf, Germany
[7] Res Ctr Julich, Inst Complex Syst, ICS Struct Biochem 6, D-52425 Julich, Germany
[8] Osaka Univ, Grad Sch Sci, Dept Chem, Toyonaka, Osaka 5600043, Japan
[9] Gifu Univ, United Grad Sch Drug Discovery & Med Informat Sci, Gifu 5011194, Japan
关键词
yeast prion; amyloid; protein misfolding; protein dynamics; aggregate; STRUCTURAL BASIS; PROTEIN HSP104; AMYLOID STATE; PSI+ PRION; PROPAGATION; SUP35P; TRANSMISSION; POLYMORPHISM; NUCLEATION; VARIANTS;
D O I
10.1073/pnas.1715483115
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Self-propagating beta-sheet-rich fibrillar protein aggregates, amyloid fibers, are often associated with cellular dysfunction and disease. Distinct amyloid conformations dictate different physiological consequences, such as cellular toxicity. However, the origin of the diversity of amyloid conformation remains unknown. Here, we suggest that altered conformational equilibrium in natively disordered monomeric proteins leads to the adaptation of alternate amyloid conformations that have different phenotypic effects. We performed a comprehensive high-resolution structural analysis of Sup35NM, an N-terminal fragment of the Sup35 yeast prion protein, and found that monomeric Sup35NM harbored latent local compact structures despite its overall disordered conformation. When the hidden local microstructures were relaxed by genetic mutations or solvent conditions, Sup35NM adopted a strikingly different amyloid conformation, which redirected chaperone-mediated fiber fragmentation and modulated prion strain phenotypes. Thus, dynamic conformational fluctuations in natively disordered monomeric proteins represent a post-translational mechanism for diversification of aggregate structures and cellular phenotypes.
引用
收藏
页码:2389 / 2394
页数:6
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