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

Anti-Prion Systems in Saccharomyces cerevisiae

酿酒酵母中的抗朊病毒系统

Wickner, Reed B; Hayashi, Yuho; Edskes, Herman K

Human proteins curing yeast prions

人类蛋白质可治愈酵母朊病毒

Wu, Songsong; Edskes, Herman K; Wickner, Reed B

Prions are the greatest protein misfolding problem, and yeast has several solutions

朊病毒是蛋白质错误折叠的最大难题,而酵母有多种应对方法。

Wickner, Reed B; Edskes, Herman K; Wu, Songsong; Gregg, Kristen

Anti-Prion Systems Block Prion Transmission, Attenuate Prion Generation, Cure Most Prions as They Arise and Limit Prion-Induced Pathology in Saccharomyces cerevisiae

抗朊病毒系统可阻断朊病毒传播,减弱朊病毒生成,在朊病毒产生之初即可治愈大多数朊病毒,并限制酿酒酵母中朊病毒引起的病理变化。

Wickner, Reed B; Edskes, Herman K; Son, Moonil; Wu, Songsong

How Do Yeast Cells Contend with Prions?

酵母细胞如何对抗朊病毒?

Wickner, Reed B; Edskes, Herman K; Son, Moonil; Wu, Songsong; Niznikiewicz, Madaleine

Prion Variants of Yeast are Numerous, Mutable, and Segregate on Growth, Affecting Prion Pathogenesis, Transmission Barriers, and Sensitivity to Anti-Prion Systems

酵母朊病毒变种众多、易变且在生长过程中发生分离,这会影响朊病毒的致病性、传播屏障以及对朊病毒系统的敏感性。

Wickner, Reed B; Son, Moonil; Edskes, Herman K

Hermes Transposon Mutagenesis Shows [URE3] Prion Pathology Prevented by a Ubiquitin-Targeting Protein: Evidence for Carbon/Nitrogen Assimilation Cross Talk and a Second Function for Ure2p in Saccharomyces cerevisiae

Hermes转座子诱变实验表明,泛素靶向蛋白可阻止[URE3]朊病毒病理的发生:酿酒酵母中碳/氮同化作用的交叉对话以及Ure2p的第二功能

Edskes, Herman K; Mukhamedova, Maryam; Edskes, Bouke K; Wickner, Reed B

Anti-Prion Systems in Yeast and Inositol Polyphosphates

酵母和肌醇多磷酸盐中的抗朊病毒系统

Wickner, Reed B; Bezsonov, Evgeny E; Son, Moonil; Ducatez, Mathieu; DeWilde, Morgan; Edskes, Herman K

Prion propagation and inositol polyphosphates

朊病毒的传播和肌醇多磷酸盐

Wickner, Reed B; Edskes, Herman K; Bezsonov, Evgeny E; Son, Moonil; Ducatez, Mathieu

Study of Amyloids Using Yeast

利用酵母研究淀粉样蛋白

Wickner, Reed B; Kryndushkin, Dmitry; Shewmaker, Frank; McGlinchey, Ryan; Edskes, Herman K