| Literature DB >> 35477998 |
Yun Fan1, Qinyue Zhao2,3, Wencheng Xia4,5, Youqi Tao2,3, Wenbo Yu1, Mingjia Chen1, Yiqi Liu1, Jue Zhao1, Yan Shen1, Yunpeng Sun4,5, Chenfang Si4,5, Shenqing Zhang2,3, Yaoyang Zhang4,5, Wensheng Li6, Cong Liu7,8, Jian Wang9, Dan Li10,11,12.
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Year: 2022 PMID: 35477998 PMCID: PMC9160068 DOI: 10.1038/s41422-022-00665-3
Source DB: PubMed Journal: Cell Res ISSN: 1001-0602 Impact factor: 46.297
Fig. 1The cryo-EM structures of TMEM106B fibrils extracted from brains of PDD patient and normal elders.
a Cryo-EM micrographs, 2D and 3D classification of amyloid fibrils extracted from the brains of two normal elders, and a PDD patient. The half pitch of the fibrils was determined by 1200-, 864-, 1024- and 1024-pixel box size class averages in 2D classification, respectively. Normal 2 has Aβ and Tau pathologies based on histological staining, while no clinical symptoms were manifested. Resolutions of 3D reconstruction are indicated. Scale bar, 50 μM. b Cryo-EM density maps and structural models (top view) of the Type 1 fibril extracted from normal 2 and Type 2 fibril extracted from PDD. Fibril width, length of half pitch, helical rise and twist angle are indicated. The twist angle is graphically illustrated. Graphing was performed with UCSF Chimera v1.13 (top). Overlay of the Type 2 structure with the density map of Type 3 fibril extracted from PDD via rigid-body fitting. The two protofilaments in Type 3 fibril are colored in blue and pink, respectively (bottom left). Overlay of the Type 2 structure with the density map of the fibril extracted from normal 1 (bottom right). The terminal residues are labeled. c Three-layer structure models of Type 1 and Type 2 TMEM106B fibrils are shown in cartoon and displayed in different views. β-strands are indicated. d Primary sequence of TMEM106B (residues 120–254) and the secondary structure alignment of the Type 1 and Type 2 fibrils with the native structure (predicted by AlphaFold2). β-strands are colored based on their counterparts in the native structure (top). Structures of TMEM106B in these three states are shown in the middle. The topology diagrams of TMEM106B in the three structures are shown at the bottom.