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

Bacterial ubiquitin ligase engineered for small molecule and protein target identification.

经基因工程改造的细菌泛素连接酶,用于小分子和蛋白质靶标鉴定。

Ye James S, Majumdar Abir, Park Brenden C, Black Miles H, Hsieh Ting-Sung, Osinski Adam, Servage Kelly A, Kulkarni Kartik, Naidoo Jacinth, Alto Neal M, Stratton Margaret M, Alfandari Dominique, Ready Joseph M, Pawłowski Krzysztof, Tomchick Diana R, Tagliabracci Vincent S

Natural Oleosomes from Nuts and Seeds: Structural Function and Potential for Pharmaceutical Applications

坚果和种子中的天然油体:结构功能及其在药物应用中的潜力

Mallillin, Marlon C 3rd; Salami, Maryam; Villalobos, Omar A; Zhao, Shengnan; El-Mahrouk, Sara R; Singh, Kirtypal; Serpe, Michael J; Siraki, Arno G; El-Kadi, Ayman O S; Bou-Chacra, Nadia; Loebenberg, Raimar; Davies, Neal M

Development of a Raft-Forming System Using Plantago major Mucilage as a Natural Polymer for Sustained Gastric Release of Artemisia annua L. Phenolic Extract

利用车前草粘液作为天然聚合物,开发一种筏状形成系统,用于持续胃释放青蒿酚提取物。

Ziaeifar, Leila; Salami, Maryam; Askari, Gholamreza; Emam-Djomeh, Zahra; Loebenberg, Raimar; Serpe, Michael J; Davies, Neal M

Deubiquitinase-dependent transcriptional silencing controls inflammation.

去泛素化酶依赖性转录沉默控制炎症

Yi Yuxin, Xu Wenjie, Mi Pengcheng, Ye Siliang, Chen Li, Alto Neal M, Liu Zixu

Single-cell analysis of genetically minimized Salmonella reveals effector gene cooperation in vivo.

对基因最小化的沙门氏菌进行单细胞分析,揭示了体内效应基因的协同作用。

Burford Wesley B, Dilabazian Hrag, Alto Laura T, Ma Duo, Mobley Angela B, Radhakrishnan Arun, Farrar J David, Alto Neal M

Salmonella multimutants enable efficient identification of SPI-2 effector protein function in gut inflammation and systemic colonization

沙门氏菌多重突变体能够有效鉴定SPI-2效应蛋白在肠道炎症和全身定植中的功能

Newson, Joshua P M; Gürtler, Flavia; Piffaretti, Pietro; Barbieri, Nicolò; Meyer, Annina; Sintsova, Anna; Barthel, Manja; Steiger, Yves; McHugh, Sarah C; Enz, Ursina; Alto, Neal M; Sunagawa, Shinichi; Hardt, Wolf-Dietrich

Shigella flexneri evades LPS ubiquitylation through IpaH1.4-mediated degradation of RNF213.

福氏志贺氏菌通过 IpaH1.4 介导的 RNF213 降解来逃避 LPS 泛素化。

Naydenova Katerina, Boyle Keith B, Pathe Claudio, Pothukuchi Prathyush, Crespillo-Casado Ana, Scharte Felix, Hammoudi Pierre-Mehdi, Otten Elsje G, Alto Neal M, Randow Felix

Unravelling the role of nanomedicine in attenuating inflammation, oxidative stress and cellular ageing in chronic obstructive pulmonary disease

揭示纳米医学在减轻慢性阻塞性肺疾病炎症、氧化应激和细胞衰老中的作用

Nagar, Lokesh; Saini, Annu; Vishwas, Sukriti; Singh, Sachin Kumar; Gupta, Gaurav; MacLoughlin, Ronan; Lobenberg, Raimar; Davies, Neal M; Chellappan, Dinesh Kumar; Paudel, Keshav Raj; Dua, Kamal; Dureja, Harish

Endolysosomal damage surveillance enables rapid inflammasome sensing of pathogens.

内溶酶体损伤监测能够使炎症小体快速感知病原体。

Shivcharan Sonia, Younis Doulathunnisa Ahamed, Wright Skylar S, Wang Chengliang, Behl Bharat, Shumba Patience, Delgado Kristina N, Chawla Arshmeet K, Alto Neal M, Panjwani Noorjahan, Vanaja Sivapriya Kailasan, Ruan Jianbin, Fan Zhichao, Rathinam Vijay A

The Shigella flexneri effector IpaH1.4 facilitates RNF213 degradation and protects cytosolic bacteria against interferon-induced ubiquitylation.

福氏志贺氏菌效应蛋白 IpaH1.4 促进 RNF213 降解,并保护胞质细菌免受干扰素诱导的泛素化作用。

Saavedra-Sanchez Luz, Dickinson Mary S, Apte Shruti S, Zhang Yifeng, De Jong Maarten, Skavicus Samantha, Heaton Nicholas S, Alto Neal M, Coers Jorn