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

Virion-associated influenza hemagglutinin clusters upon sialic acid binding visualized by cryoelectron tomography

利用冷冻电镜断层扫描技术可视化病毒颗粒相关的流感血凝素与唾液酸结合后的聚集现象

Huang, Qiuyu J; Kim, Ryan; Song, Kangkang; Grigorieff, Nikolaus; Munro, James B; Schiffer, Celia A; Somasundaran, Mohan

Subnanometer-resolution Structural Determination of Hemagglutinin from Cryo-electron Tomography of Influenza Viruses

利用冷冻电镜断层扫描技术对流感病毒血凝素进行亚纳米级分辨率结构测定

Huang, Qiuyu J; McDaniel, Clint N; Griffith, Alijah A; Schiffer, Celia A; Somasundaran, Mohan

SARS-CoV-2 Initiates Programmed Cell Death in Platelets

SARS-CoV-2 启动血小板程序性细胞死亡

Koupenova, Milka; Corkrey, Heather A; Vitseva, Olga; Tanriverdi, Kahraman; Somasundaran, Mohan; Liu, Ping; Soofi, Shaukat; Bhandari, Rohan; Godwin, Matthew; Parsi, Krishna Mohan; Cousineau, Alyssa; Maehr, René; Wang, Jennifer P; Cameron, Scott J; Rade, Jeffrey; Finberg, Robert W; Freedman, Jane E

Unique structural solution from a V(H)3-30 antibody targeting the hemagglutinin stem of influenza A viruses

针对甲型流感病毒血凝素茎的V(H)3-30抗体的独特结构解析

Harshbarger, Wayne D; Deming, Derrick; Lockbaum, Gordon J; Attatippaholkun, Nattapol; Kamkaew, Maliwan; Hou, Shurong; Somasundaran, Mohan; Wang, Jennifer P; Finberg, Robert W; Zhu, Quan Karen; Schiffer, Celia A; Marasco, Wayne A

HIV-1 R5 Macrophage-Tropic Envelope Glycoprotein Trimers Bind CD4 with High Affinity, while the CD4 Binding Site on Non-macrophage-tropic, T-Tropic R5 Envelopes Is Occluded

HIV-1 R5 巨噬细胞嗜性包膜糖蛋白三聚体与 CD4 高亲和力结合,而非巨噬细胞嗜性、T 细胞嗜性 R5 包膜上的 CD4 结合位点则被阻断。

Quitadamo, Briana; Peters, Paul J; Repik, Alexander; O'Connell, Olivia; Mou, Zhongming; Koch, Matthew; Somasundaran, Mohan; Brody, Robin; Luzuriaga, Katherine; Wallace, Aaron; Wang, Shixia; Lu, Shan; McCauley, Sean; Luban, Jeremy; Duenas-Decamp, Maria; Gonzalez-Perez, Maria Paz; Clapham, Paul R

Ultradeep single-molecule real-time sequencing of HIV envelope reveals complete compartmentalization of highly macrophage-tropic R5 proviral variants in brain and CXCR4-using variants in immune and peripheral tissues

HIV包膜的超深度单分子实时测序揭示了高度嗜巨噬细胞的R5前病毒变体在大脑中的完全区室化,以及利用CXCR4的变体在免疫和外周组织中的完全区室化。

Brese, Robin L; Gonzalez-Perez, Maria Paz; Koch, Matthew; O'Connell, Olivia; Luzuriaga, Katherine; Somasundaran, Mohan; Clapham, Paul R; Dollar, James Jarad; Nolan, David J; Rose, Rebecca; Lamers, Susanna L

Early Combination Antiretroviral Therapy Limits Exposure to HIV-1 Replication and Cell-Associated HIV-1 DNA Levels in Infants

早期联合抗逆转录病毒疗法可限制婴儿接触 HIV-1 复制和细胞相关 HIV-1 DNA 水平

McManus, Margaret; Mick, Eric; Hudson, Richard; Mofenson, Lynne M; Sullivan, John L; Somasundaran, Mohan; Luzuriaga, Katherine

Recombination elevates the effective evolutionary rate and facilitates the establishment of HIV-1 infection in infants after mother-to-child transmission

重组提高了有效进化速率,并促进了母婴传播后婴儿体内HIV-1感染的建立。

Sanborn, Keri B; Somasundaran, Mohan; Luzuriaga, Katherine; Leitner, Thomas

Pilot study on the immunogenicity of paired Env immunogens from mother-to-child transmitted HIV-1 isolates.

对母婴传播的 HIV-1 分离株的配对 Env 免疫原的免疫原性进行初步研究

Wang Shixia, Kishko Michael, Wan Shengqin, Wang Yan, Brewster Frank, Gray Glenda E, Violari Avye, Sullivan John L, Somasundaran Mohan, Luzuriaga Katherine, Lu Shan

Mass spectrometry tools for analysis of intermolecular interactions

用于分析分子间相互作用的质谱工具

Auclair, Jared R; Somasundaran, Mohan; Green, Karin M; Evans, James E; Schiffer, Celia A; Ringe, Dagmar; Petsko, Gregory A; Agar, Jeffrey N