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

RIG-I–Adjuvanted Immunogen Elicited T-Cell Immunity Controls Trypanosoma cruzi, Chagasic Cardiomyopathy, and Left Ventricular Dysfunction

RIG-I佐剂免疫原诱导的T细胞免疫可控制克氏锥虫病、恰加斯病心肌病和左心室功能障碍

Hsiao, E C; Millard, S M; Nissenson, R A; Lokugamage, Nandadeva; Wyrick, Allison; Choudhuri, Subhadip; Raja, Maher; Chowdhury, Imran H; De, Siddhartha; Marathi, Upendra; Garg, Nisha Jain

SARS-CoV-2 EndoU-ribonuclease regulates RNA recombination and impacts viral fitness

SARS-CoV-2 EndoU核糖核酸酶调控RNA重组并影响病毒适应性

Zhou, Yiyang; Ahearn, Yani P; Lokugamage, Kumari G; Morgan, Angelica L; Alvarado, R Elias; Estes, Leah K; Meyers, William M; McLeland, Alyssa M; Murray, Jordan T; Rouse, Joseph R; Kar, Meenakshi; Suthar, Mehul S; Walker, David H; Johnson, Bryan A; Routh, Andrew L; Menachery, Vineet D

Nanoparticle delivery of a prodrug-activating bacterial enzyme leads to anti-tumor responses

利用纳米颗粒递送前药激活细菌酶可诱导抗肿瘤反应

Sebastian G Huayamares ,Liming Lian ,Regina Rab ,Yuning Hou ,Afsane Radmand ,Hyejin Kim ,Ryan Zenhausern ,Bhagelu R Achyut ,Melissa Gilbert Ross ,Melissa P Lokugamage ,David Loughrey ,Hannah E Peck ,Elisa Schrader Echeverri ,Alejandro J Da Silva Sanchez ,Aram Shajii ,Andrea Li ,Karen E Tiegreen ,Philip J Santangelo ,Eric J Sorscher ,James E Dahlman

Variant mutation G215C in SARS-CoV-2 nucleocapsid enhances viral infection via altered genomic encapsidation.

SARS-CoV-2 核衣壳中的变异突变 G215C 通过改变基因组包装增强病毒感染

Kubinski Hannah C, Despres Hannah W, Johnson Bryan A, Schmidt Madaline M, Jaffrani Sara A, Turner Allyson H, Fanuele Conor D, Mills Margaret G, Lokugamage Kumari G, Dumas Caroline M, Shirley David J, Estes Leah K, Pekosz Andrew, Crothers Jessica W, Roychoudhury Pavitra, Greninger Alexander L, Jerome Keith R, Di Genova Bruno Martorelli, Walker David H, Ballif Bryan A, Ladinsky Mark S, Bjorkman Pamela J, Menachery Vineet D, Bruce Emily A

PARP1-NFATc1-PD1 pathway of maturation and stability of CD8+T cells is beneficial against chronic Trypanosoma cruzi infection

PARP1-NFATc1-PD1通路促进CD8+T细胞的成熟和稳定性,有利于抵抗克氏锥虫慢性感染。

Imran H Chowdhury,Nandadeva Lokugamage,Nisha J Garg

PARP1-NFATc1-PD1 pathway of maturation and stability of CD8(+)T cells is beneficial against chronic Trypanosoma cruzi infection

PARP1-NFATc1-PD1通路促进CD8(+)T细胞的成熟和稳定性,有利于抵抗克氏锥虫慢性感染。

Chowdhury, Imran H; Lokugamage, Nandadeva; Garg, Nisha J

Convergent evolution in nucleocapsid facilitated SARS-CoV-2 adaptation for human infection.

核衣壳的趋同进化促进了SARS-CoV-2适应人类感染

Lokugamage Kumari G, Zhou Yiyang, Alvarado R Elias, Plante Jessica A, Ahearn Yani, Chen Jennifer, Estes Leah, Meyers William, Nilsson Jakob, Routh Andrew L, Walker David H, Menachery Vineet D, Johnson Bryan A

The furin cleavage site is required for pathogenesis, but not transmission, of SARS-CoV-2.

SARS-CoV-2 的致病性需要弗林蛋白酶切割位点,但传播并不需要

Morgan Angelica L, Vu Michelle N, Zhou Yiyang, Lokugamage Kumari G, Meyers William M, Alvarado R Elias, Ahearn Yani, Estes Leah K, Plante Jessica A, Johnson Bryan A, Suthar Mehul S, Walker David H, Plante Ken S, Menachery Vineet D

Key residues in SARS-CoV-2 NSP3 hyper variable region are necessary to modulate early stress granule activity

SARS-CoV-2 NSP3 高变区中的关键残基对于调节早期应激颗粒活性至关重要。

Alvarado, R Elias; Lokugamage, Kumari G; Garvanska, Dimitriya; Estes, Leah K; Ahearn, Yani; McLeland, Alyssa M; Moayyed, Arian; Chen, Jennifer; Lopez Mendez, Blanca; Plante, Jessica A; Plante, Kenneth S; Johnson, Bryan A; Nilsson, Jakob; Menachery, Vineet D

The furin cleavage site is required for pathogenesis, but not transmission of SARS-CoV-2.

弗林蛋白酶切割位点是 SARS-CoV-2 致病所必需的,但并非其传播所必需的

Morgan Angelica L, Vu Michelle N, Zhou Yiyang, Lokugamage Kumari G, Meyers William M, Alvarado R Elias, Ahearn Yani, Estes Leah K, Plante Jessica A, Johnson Bryan A, Suthar Mehul S, Walker David H, Plante Ken S, Menachery Vineet D