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

A prophage-encoded sRNA limits phage infection of adherent-invasive E. coli

前噬菌体编码的小RNA限制噬菌体对黏附侵袭性大肠杆菌的感染

Pershing, Nicole L; Brzozowski, Robert S; Schmidt, Amelia K; Faith, Dominick R; Joyce, Alex C; de Ora, Lizett Ortiz; Kominsky, John D; Dankwardt, Annika; Maciver, Andrew; Bell, Rickesha; Henriques, William S; Andersen, Shelby E; Wiedenheft, Blake; Casjens, Sherwood R; Duerkop, Breck A; Round, June L; Secor, Patrick R

The retrotransposon-derived capsid genes PNMA1 and PNMA4 maintain reproductive capacity.

逆转录转座子衍生的衣壳基因PNMA1和PNMA4维持繁殖能力

Wood Thomas W P, Henriques William S, Cullen Harrison B, Romero Mayra, Blengini Cecilia S, Sarathy Shreya, Sorkin Julia, Bekele Hilina, Jin Chen, Kim Seungsoo, Wang Xifan, Laureau Raphaelle, Chemiakine Alexei, Khondker Rishad C, Isola José V V, Stout Michael B, Gennarino Vincenzo A, Mogessie Binyam, Jain Devanshi, Schindler Karen, Suh Yousin, Wiedenheft Blake, Berchowitz Luke E

Structural basis of antiphage defence by an ATPase-associated reverse transcriptase

ATPase相关逆转录酶介导的抗噬菌体防御的结构基础

George, Jerrin Thomas; Burman, Nathaniel; Wilkinson, Royce A; de Silva, Senuri; McKelvey-Pham, Quynh; Buyukyoruk, Murat; Dale, Adelaide; Landman, Hannah; Graham, Ava B; DeLuca, Steven Z; Wiedenheft, Blake

Discovery of Diverse CRISPR Leader Motifs, Putative Functions, and Applications for Enhanced CRISPR Detection and Subtype Annotation

发现多种 CRISPR 前导序列基序、假定功能及其在增强 CRISPR 检测和亚型注释中的应用

Buyukyoruk, Murat; Krishna, Pushya; Santiago-Frangos, Andrew; Wiedenheft, Blake

Structures reveal how the Cas1-2/3 integrase captures, delivers, and integrates foreign DNA into CRISPR loci

结构揭示了Cas1-2/3整合酶如何捕获、递送外源DNA并将其整合到CRISPR位点。

Henriques, William S; Bowman, Jarrett; Hall, Laina N; Gauvin, Colin C; Wei, Hui; Kuang, Huihui; Zimanyi, Christina M; Eng, Edward T; Santiago-Frangos, Andrew; Wiedenheft, Blake

A census of anti-CRISPR proteins reveals AcrIE9 as an inhibitor of Escherichia coli K12 Type IE CRISPR-Cas system

对 CRISPR 抗蛋白的普查表明,AcrIE9 是大肠杆菌 K12 IE 型 CRISPR-Cas 系统的抑制剂。

Taranenko, Dmitry; Kotovskaya, Oksana; Kuznedelov, Konstantin; Yanovskaya, Daria; Demkina, Alina; Fardeeva, Sofya; Mamontov, Viktor; Vierra, Kaiya; Burman, Nathaniel; Li, Dan; Wang, Minggui; Wiedenheft, Blake; Severinov, Konstantin; Semenova, Ekaterina; Isaev, Artem

A prophage-encoded sRNA limits lytic phage infection of adherent-invasive E. coli

前噬菌体编码的小RNA限制了裂解性噬菌体对黏附侵袭性大肠杆菌的感染。

Brzozowski, Robert S; Schmidt, Amelia K; Pershing, Nicole L; Dankwardt, Annika; Faith, Dominick R; Joyce, Alex C; Maciver, Andrew; Henriques, William S; Andersen, Shelby E; Wiedenheft, Blake; Casjens, Sherwood R; Duerkop, Breck A; Round, June L; Secor, Patrick R

Protein-primed DNA homopolymer synthesis by an antiviral reverse transcriptase.

抗病毒逆转录酶引发的蛋白质引物DNA同聚物合成

Tang Stephen, Žedaveinytė Rimantė, Burman Nathaniel, Pandey Shishir, Ramirez Josephine L, Kulber Louie M, Wiegand Tanner, Wilkinson Royce A, Ma Yanzhe, Zhang Dennis J, Lampe George D, Berisa Mirela, Jovanovic Marko, Wiedenheft Blake, Sternberg Samuel H

Structural basis of antiphage defense by an ATPase-associated reverse transcriptase.

ATPase相关逆转录酶的抗噬菌体防御的结构基础

George Jerrin Thomas, Burman Nathaniel, Wilkinson Royce A, de Silva Senuri, McKelvey-Pham Quynh, Buyukyoruk Murat, Dale Adelaide, Landman Hannah, Graham Ava, DeLuca Steven Z, Wiedenheft Blake

Author Correction: A virally encoded tRNA neutralizes the PARIS antiviral defence system

作者更正:病毒编码的tRNA能够中和PARIS抗病毒防御系统。

Burman, Nathaniel; Belukhina, Svetlana; Depardieu, Florence; Wilkinson, Royce A; Skutel, Mikhail; Santiago-Frangos, Andrew; Graham, Ava B; Livenskyi, Alexei; Chechenina, Anna; Morozova, Natalia; Zahl, Trevor; Henriques, William S; Buyukyoruk, Murat; Rouillon, Christophe; Saudemont, Baptiste; Shyrokova, Lena; Kurata, Tatsuaki; Hauryliuk, Vasili; Severinov, Konstantin; Groseille, Justine; Thierry, Agnès; Koszul, Romain; Tesson, Florian; Bernheim, Aude; Bikard, David; Wiedenheft, Blake; Isaev, Artem