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

KHNYN is a manganese-dependent endoribonuclease required for ZAP-mediated antiviral restriction.

KHNYN 是一种锰依赖性核糖核酸内切酶,是 ZAP 介导的抗病毒限制所必需的。

Youle Rebecca L, Lista Maria Jose, Brudenell Emma L, Thompson Bradley, Bouton Clement, Morris Elizabeth R, Neil Stuart J D, Swanson Chad M, Taylor Ian A

Mammalian antiviral proteins ZAP and KHNYN can independently restrict CpG-enriched avian viruses

哺乳动物抗病毒蛋白ZAP和KHNYN可以独立地抑制富含CpG的禽类病毒。

Jordan T Becker,Clayton K Mickelson,Lauren M Pross,Autumn E Sanders,Esther R Vogt,Frances K Shepherd,Chloe Wick,Alison J Barkhymer,Stephanie L Aron,Elizabeth J Fay,Reuben S Harris,Ryan A Langlois

A minimal complex of KHNYN and zinc-finger antiviral protein binds and degrades single-stranded RNA

KHNYN 与锌指抗病毒蛋白形成的最小复合物能够结合并降解单链 RNA。

Yeoh, Zoe C; Meagher, Jennifer L; Kang, Chia-Yu; Bieniasz, Paul D; Smith, Janet L; Ohi, Melanie D

Strain-Dependent Restriction of Human Cytomegalovirus by Zinc Finger Antiviral Proteins

锌指抗病毒蛋白对人类巨细胞病毒的菌株依赖性限制

Maria Jose Lista #, Adam A Witney #, Jenna Nichols, Andrew J Davison, Harry Wilson, Katie A Latham, Benjamin J Ravenhill, Katie Nightingale, Richard J Stanton, Michael P Weekes, Stuart J D Neil, Chad M Swanson, Blair L Strang

S-farnesylation is essential for antiviral activity of the long ZAP isoform against RNA viruses with diverse replication strategies

S-法呢基化对于长 ZAP 异构体对抗具有多种复制策略的 RNA 病毒的抗病毒活性至关重要

Dorota Kmiec, María José Lista, Mattia Ficarelli, Chad M Swanson, Stuart J D Neil

SARS-CoV-2 Is Restricted by Zinc Finger Antiviral Protein despite Preadaptation to the Low-CpG Environment in Humans

尽管SARS-CoV-2已预先适应人类的低CpG环境,但锌指抗病毒蛋白仍能限制其在人体内的生存。

Rayhane Nchioua ,Dorota Kmiec ,Janis A Müller ,Carina Conzelmann ,Rüdiger Groß ,Chad M Swanson ,Stuart J D Neil ,Steffen Stenger ,Daniel Sauter ,Jan Münch ,Konstantin M J Sparrer ,Frank Kirchhoff