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

Native Mass Spectrometry Analysis of Cullin RING Ubiquitin E3 Ligase Complexes in the Context of Targeted Protein Degradation

利用天然质谱分析 Cullin RING 泛素 E3 连接酶复合物在靶向蛋白降解中的作用

Sternicki, Louise M; Crowe, Charlotte; Wieske, Lianne H E; Ciulli, Alessio; Poulsen, Sally-Ann

Carbonic Anhydrase 3 Overexpression Modulates Signalling Pathways Associated with Cellular Stress Resilience and Proteostasis

碳酸酐酶3过表达调节与细胞应激恢复和蛋白质稳态相关的信号通路

Yu, Yezhou; Anugraham, Merrina; Blick, Tony; Kulasinghe, Arutha; Sternicki, Louise M; Di Trapani, Giovanna; Poulsen, Sally-Ann; Kolarich, Daniel; Tonissen, Kathryn F

Hydrogen-Deuterium Exchange Defines Ligand-Induced Conformational Changes to the Class III Biotin Protein Ligase from Saccharomyces cerevisiae

氢-氘交换定义了酿酒酵母III类生物素蛋白连接酶的配体诱导构象变化

Sternicki, Louise M; Pukala, Tara L; Pacholarz, Kamila J; Barran, Perdita; Booker, Grant W; Polyak, Steven W; Wegener, Kate L

Natural Product Graveoline Modulates Kirsten Rat Sarcoma Viral Oncogene Homologue (KRAS) Membrane Association: Insights from Advanced Spectroscopic Studies

天然产物格拉维林调节Kirsten大鼠肉瘤病毒癌基因同源物(KRAS)的膜结合:来自高级光谱学研究的启示

Cornilescu, Gabriel; Bindu, Lakshman; Sternicki, Louise; Chao, Fa-An; Gillette, William K; Fer, Nicole; Colombus, John; Castillo, Jean; Bonilla, Pedro Andrade; Van, Que N; Larsen, Erik; Hong, Min; Burgan, William; Turbyville, Thomas; Nissley, Dwight V; Liu, Miaomiao; Quinn, Ronald; Jean-Francois, Frantz L

Fragment-based drug discovery campaigns guided by native mass spectrometry

以天然质谱为指导的基于片段的药物发现活动

Sternicki, Louise M; Poulsen, Sally-Ann

Production and Properties of the Porous Layer Obtained by the Electrochemical Method on the Surface of Austenitic Steel

采用电化学方法在奥氏体钢表面制备多孔层及其性能

Ossowska, Agnieszka; Ryl, Jacek; Sternicki, Tomasz

Native Mass Spectrometry for the Study of PROTAC GNE-987-Containing Ternary Complexes

利用天然质谱法研究含PROTAC GNE-987的三元复合物

Sternicki, Louise M; Nonomiya, Jim; Liu, Miaomiao; Mulvihill, Melinda M; Quinn, Ronald J

Advanced Resistance Studies Identify Two Discrete Mechanisms in Staphylococcus aureus to Overcome Antibacterial Compounds that Target Biotin Protein Ligase

高级耐药性研究确定了金黄色葡萄球菌中两种不同的机制来克服针对生物素蛋白连接酶的抗菌化合物

Andrew J Hayes, Jiulia Satiaputra, Louise M Sternicki, Ashleigh S Paparella, Zikai Feng, Kwang J Lee, Beatriz Blanco- Rodriguez, William Tieu, Bart A Eijkelkamp, Keith E Shearwin, Tara L Pukala, Andrew D Abell, Grant W Booker, Steven W Polyak