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

Chemical, Biological, Radiological, Nuclear, and Explosive (CBRNE) Science and the CBRNE Science Medical Operations Science Support Expert (CMOSSE)

化学、生物、放射性、核及爆炸物(CBRNE)科学和CBRNE科学医疗行动科学支持专家(CMOSSE)

Coleman, C Norman; Bader, Judith L; Koerner, John F; Hrdina, Chad; Cliffer, Kenneth D; Hick, John L; James, James J; Mansoura, Monique K; Livinski, Alicia A; Nystrom, Scott V; DiCarlo-Cohen, Andrea; Marinissen, Maria Julia; Wathen, Lynne; Appler, Jessica M; Buddemeier, Brooke; Casagrande, Rocco; Estes, Derek; Byrne, Patrick; Kennedy, Edward M; Jakubowski, Ann A; Case, Cullen; Weinstock, David M; Dainiak, Nicholas; Hanfling, Dan; Garrett, Andrew L; Grant, Natalie N; Dodgen, Daniel; Redlener, Irwin; MacKAY, Thomas F; Treber, Meghan; Homer, Mary J; Taylor, Tammy P; Miller, Aubrey; Korch, George; Hatchett, Richard

Targeting HPV16 DNA using CRISPR/Cas inhibits anal cancer growth in vivo

利用 CRISPR/Cas 技术靶向 HPV16 DNA 可抑制体内肛门癌的生长。

Hsu, David S; Kornepati, Anand Vr; Glover, Wayne; Kennedy, Edward M; Cullen, Bryan R

Posttranscriptional m(6)A Editing of HIV-1 mRNAs Enhances Viral Gene Expression

HIV-1 mRNA的转录后m(6)A编辑增强病毒基因表达

Kennedy, Edward M; Bogerd, Hal P; Kornepati, Anand V R; Kang, Dong; Ghoshal, Delta; Marshall, Joy B; Poling, Brigid C; Tsai, Kevin; Gokhale, Nandan S; Horner, Stacy M; Cullen, Bryan R

Viral Epitranscriptomics

病毒表观转录组学

Kennedy, Edward M; Courtney, David G; Tsai, Kevin; Cullen, Bryan R

Posttranscriptional m(6)A Editing of HIV-1 mRNAs Enhances Viral Gene Expression.

HIV-1 mRNA 的转录后 m(6)A 编辑增强病毒基因表达

Kennedy Edward M, Bogerd Hal P, Kornepati Anand V R, Kang Dong, Ghoshal Delta, Marshall Joy B, Poling Brigid C, Tsai Kevin, Gokhale Nandan S, Horner Stacy M, Cullen Bryan R

Bacterial CRISPR/Cas DNA endonucleases: A revolutionary technology that could dramatically impact viral research and treatment

细菌 CRISPR/Cas DNA 内切酶:一项可能对病毒研究和治疗产生巨大影响的革命性技术

Kennedy, Edward M; Cullen, Bryan R

Replication of many human viruses is refractory to inhibition by endogenous cellular microRNAs.

许多人类病毒的复制不受内源性细胞微RNA抑制的影响

Bogerd Hal P, Skalsky Rebecca L, Kennedy Edward M, Furuse Yuki, Whisnant Adam W, Flores Omar, Schultz Kimberly L W, Putnam Nicole, Barrows Nicholas J, Sherry Barbara, Scholle Frank, Garcia-Blanco Mariano A, Griffin Diane E, Cullen Bryan R

Abundant non-canonical dUTP found in primary human macrophages drives its frequent incorporation by HIV-1 reverse transcriptase.

原代人类巨噬细胞中发现的大量非经典 dUTP 驱动 HIV-1 逆转录酶频繁地掺入其中

Kennedy Edward M, Daddacha Waaqo, Slater Rebecca, Gavegnano Christina, Fromentin Emilie, Schinazi Raymond F, Kim Baek

Ribonucleoside triphosphates as substrate of human immunodeficiency virus type 1 reverse transcriptase in human macrophages.

核糖核苷三磷酸作为人类巨噬细胞中人类免疫缺陷病毒1型逆转录酶的底物

Kennedy Edward M, Gavegnano Christina, Nguyen Laura, Slater Rebecca, Lucas Amanda, Fromentin Emilie, Schinazi Raymond F, Kim Baek

Functional analysis of NsrR, a nitric oxide-sensing Rrf2 repressor in Neisseria gonorrhoeae.

对淋病奈瑟菌中一氧化氮感应 Rrf2 阻遏物 NsrR 进行功能分析

Isabella Vincent M, Lapek John D Jr, Kennedy Edward M, Clark Virginia L