日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

PRNP E146G mutation inherited prion disease: distinctive clinical, pathological and fluid biomarker features.

PRNP E146G 突变遗传性朊病毒病:独特的临床、病理和体液生物标志物特征

Coysh Thomas, Jaunmuktane Zane, Hosszu Laszlo L P, Majbour Nour, Zhang Fuquan, Campbell Tracy, Darwent Lee, Matus Marcelo Barria, Chan Edgar, Holm-Mercer Leah, Mok Tze How, Wadsworth Jonathan D F, Bieschke Jan, Nithi Kannan, Brandner Sebastian, Smith Colin, Esiri Margaret, Collinge John, Mead Simon

Direct Observation of Competing Prion Protein Fibril Populations with Distinct Structures and Kinetics

直接观察具有不同结构和动力学特征的竞争性朊病毒蛋白原纤维群体

Sun, Yuanzi; Jack, Kezia; Ercolani, Tiziana; Sangar, Daljit; Hosszu, Laszlo; Collinge, John; Bieschke, Jan

Essential Components of Synthetic Infectious Prion Formation De Novo

从头合成感染性朊病毒形成的基本组成部分

Jack, Kezia; Jackson, Graham S; Bieschke, Jan

Structural effects of the highly protective V127 polymorphism on human prion protein.

高度保护性的 V127 多态性对人类朊病毒蛋白的结构影响

Hosszu Laszlo L P, Conners Rebecca, Sangar Daljit, Batchelor Mark, Sawyer Elizabeth B, Fisher Stuart, Cliff Matthew J, Hounslow Andrea M, McAuley Katherine, Leo Brady R, Jackson Graham S, Bieschke Jan, Waltho Jonathan P, Collinge John

Desmin forms toxic, seeding-competent amyloid aggregates that persist in muscle fibers

结蛋白会形成有毒的、具有播散能力的淀粉样蛋白聚集体,这些聚集体持续存在于肌肉纤维中。

Kedia, Niraja; Arhzaouy, Khalid; Pittman, Sara K; Sun, Yuanzi; Batchelor, Mark; Weihl, Conrad C; Bieschke, Jan

Super-resolution Imaging of Amyloid Structures over Extended Times by Using Transient Binding of Single Thioflavin T Molecules

利用单分子硫黄素T的瞬时结合,对淀粉样蛋白结构进行长时间超分辨率成像

Spehar, Kevin; Ding, Tianben; Sun, Yuanzi; Kedia, Niraja; Lu, Jin; Nahass, George R; Lew, Matthew D; Bieschke, Jan

Amyloid-β(1-42) Aggregation Initiates Its Cellular Uptake and Cytotoxicity

淀粉样蛋白β(1-42)聚集启动其细胞摄取和细胞毒性

Jin, Sha; Kedia, Niraja; Illes-Toth, Eva; Haralampiev, Ivan; Prisner, Simon; Herrmann, Andreas; Wanker, Erich E; Bieschke, Jan

Stabilization of α-Synuclein Fibril Clusters Prevents Fragmentation and Reduces Seeding Activity and Toxicity

α-突触核蛋白原纤维簇的稳定可防止其断裂,并降低其种子活性和毒性。

Lam, Huy T; Graber, Michael C; Gentry, Katherine A; Bieschke, Jan

Tau Trimers Are the Minimal Propagation Unit Spontaneously Internalized to Seed Intracellular Aggregation.

Tau 三聚体是自发内化并引发细胞内聚集的最小传播单元

Mirbaha Hilda, Holmes Brandon B, Sanders David W, Bieschke Jan, Diamond Marc I

The green tea polyphenol (-)-epigallocatechin gallate prevents the aggregation of tau protein into toxic oligomers at substoichiometric ratios

绿茶多酚(-)-表没食子儿茶素没食子酸酯能以亚化学计量比阻止tau蛋白聚集形成有毒的低聚物。

Wobst, Heike J; Sharma, Apurwa; Diamond, Marc I; Wanker, Erich E; Bieschke, Jan