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

Structure-Guided Synthesis of FK506 and FK520 Analogs with Increased Selectivity Exhibit In Vivo Therapeutic Efficacy against Cryptococcus

结构引导合成选择性更高的 FK506 和 FK520 类似物,在体内表现出对隐球菌的治疗效果

Michael J Hoy, Eunchong Park #, Hyunji Lee #, Won Young Lim #, D Christopher Cole, Nicholas D DeBouver, Benjamin G Bobay, Phillip G Pierce, David Fox 3rd, Maria Ciofani, Praveen R Juvvadi, William Steinbach, Jiyong Hong, Joseph Heitman

Genetic Interaction Analysis Reveals that Cryptococcus neoformans Utilizes Multiple Acetyl-CoA-Generating Pathways during Infection

遗传相互作用分析表明新型隐球菌在感染过程中利用多种乙酰辅酶 A 生成途径

Katy M Alden #, Andrew J Jezewski #, Sarah R Beattie, David Fox 3rd, Damian J Krysan

High-resolution crystal structure and chemical screening reveal pantothenate kinase as a new target for antifungal development

高分辨率晶体结构和化学筛选揭示泛酸激酶是抗真菌开发的新靶点

Shalev Gihaz, Peter Gareiss, Jae-Yeon Choi, Isaline Renard, Anasuya Chattopadhyay Pal, Yulia Surovsteva, Joy E Chiu, Jose Thekkiniath, Mark Plummer, William Hungerford, Micaela L Montgomery, Alanah Hosford, Emily M Adams, Jorge D Lightfoot, David Fox 3rd, Kayode K Ojo, Bart L Staker, Kevin Fuller, C

A conformation-selective monoclonal antibody against a small molecule-stabilised signalling-deficient form of TNF

针对小分子稳定信号缺陷型 TNF 的构象选择性单克隆抗体

Daniel J Lightwood, Rebecca J Munro, John Porter, David McMillan, Bruce Carrington, Alison Turner, Anthony Scott-Tucker, Elizabeth S Hickford, Antje Schmidt, David Fox 3rd, Alison Maloney, Tom Ceska, Tim Bourne, James O'Connell, Alastair D G Lawson

Structural insights into the disruption of TNF-TNFR1 signalling by small molecules stabilising a distorted TNF

通过稳定扭曲的 TNF 的小分子破坏 TNF-TNFR1 信号传导的结构洞察

David McMillan, Carlos Martinez-Fleites, John Porter, David Fox 3rd, Rachel Davis, Prashant Mori, Tom Ceska, Bruce Carrington, Alastair Lawson, Tim Bourne, James O'Connell

Harnessing calcineurin-FK506-FKBP12 crystal structures from invasive fungal pathogens to develop antifungal agents

利用侵袭性真菌病原体的钙调神经磷酸酶-FK506-FKBP12 晶体结构开发抗真菌剂

Praveen R Juvvadi, David Fox 3rd, Benjamin G Bobay, Michael J Hoy, Sophie M C Gobeil, Ronald A Venters, Zanetta Chang, Jackie J Lin, Anna Floyd Averette, D Christopher Cole, Blake C Barrington, Joshua D Wheaton, Maria Ciofani, Michael Trzoss, Xiaoming Li, Soo Chan Lee, Ying-Lien Chen, Mitchell Mutz,

Insight into small molecule binding to the neonatal Fc receptor by X-ray crystallography and 100 kHz magic-angle-spinning NMR

通过 X 射线晶体学和 100 kHz 魔角旋转 NMR 深入了解小分子与新生儿 Fc 受体的结合

Daniel Stöppler, Alex Macpherson, Susanne Smith-Penzel, Nicolas Basse, Fabien Lecomte, Hervé Deboves, Richard D Taylor, Tim Norman, John Porter, Lorna C Waters, Marta Westwood, Ben Cossins, Katharine Cain, James White, Robert Griffin, Christine Prosser, Sebastian Kelm, Amy H Sullivan, David Fox 3rd,

A structural biology approach enables the development of antimicrobials targeting bacterial immunophilins

结构生物学方法可以开发针对细菌免疫亲和素的抗菌药物

Darren W Begley, David Fox 3rd, Dominic Jenner, Christina Juli, Phillip G Pierce, Jan Abendroth, Muigai Muruthi, Kris Safford, Vanessa Anderson, Kateri Atkins, Steve R Barnes, Spencer O Moen, Amy C Raymond, Robin Stacy, Peter J Myler, Bart L Staker, Nicholas J Harmer, Isobel H Norville, Ulrike Holzg

Top3β is an RNA topoisomerase that works with fragile X syndrome protein to promote synapse formation

Top3β 是一种 RNA 拓扑异构酶,可与脆性 X 综合征蛋白协同作用,促进突触形成

Dongyi Xu, Weiping Shen, Rong Guo, Yutong Xue, Wei Peng, Jian Sima, Jay Yang, Alexei Sharov, Subramanya Srikantan, Jiandong Yang, David Fox 3rd, Yong Qian, Jennifer L Martindale, Yulan Piao, James Machamer, Samit R Joshi, Subhasis Mohanty, Albert C Shaw, Thomas E Lloyd, Grant W Brown, Minoru S H Ko,

A variant of the breast cancer type 2 susceptibility protein (BRC) repeat is essential for the RECQL5 helicase to interact with RAD51 recombinase for genome stabilization

乳腺癌 2 型易感蛋白 (BRC) 重复序列的变体对于 RECQL5 解旋酶与 RAD51 重组酶相互作用以实现基因组稳定至关重要

M Nurul Islam, Nicolas Paquet, David Fox 3rd, Eloise Dray, Xiao-Feng Zheng, Hannah Klein, Patrick Sung, Weidong Wang