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

Guidelines for Free-Energy Calculations Involving Charge Changes

涉及电荷变化的自由能计算指南

Petrov, Drazen; Perthold, Jan Walther; Oostenbrink, Chris; de Groot, Bert L; Gapsys, Vytautas

ACE2 is the critical in vivo receptor for SARS-CoV-2 in a novel COVID-19 mouse model with TNF- and IFNγ-driven immunopathology

在一种新型 COVID-19 小鼠模型中,ACE2 是 SARS-CoV-2 的关键体内受体,该模型具有 TNF 和 IFNγ 驱动的免疫病理学特征。

Riem Gawish # ,Philipp Starkl # ,Lisabeth Pimenov ,Anastasiya Hladik ,Karin Lakovits ,Felicitas Oberndorfer ,Shane Jf Cronin ,Anna Ohradanova-Repic ,Gerald Wirnsberger ,Benedikt Agerer ,Lukas Endler ,Tümay Capraz ,Jan W Perthold ,Domagoj Cikes ,Rubina Koglgruber ,Astrid Hagelkruys ,Nuria Montserrat ,Ali Mirazimi ,Louis Boon ,Hannes Stockinger ,Andreas Bergthaler ,Chris Oostenbrink ,Josef M Penninger ,Sylvia Knapp

Structure-guided glyco-engineering of ACE2 for improved potency as soluble SARS-CoV-2 decoy receptor

结构引导的 ACE2 糖基工程可提高其作为可溶性 SARS-CoV-2 诱饵受体的效力

Tümay Capraz #, Nikolaus F Kienzl #, Elisabeth Laurent #, Jan W Perthold, Esther Föderl-Höbenreich, Clemens Grünwald-Gruber, Daniel Maresch, Vanessa Monteil, Janine Niederhöfer, Gerald Wirnsberger, Ali Mirazimi, Kurt Zatloukal, Lukas Mach, Josef M Penninger, Chris Oostenbrink, Johannes Stadlmann

Charge-Changing Perturbations and Path Sampling via Classical Molecular Dynamic Simulations of Simple Guest-Host Systems

通过经典分子动力学模拟简单客体-主体体系,研究电荷变化扰动和路径采样。

Öhlknecht, Christoph; Perthold, Jan Walther; Lier, Bettina; Oostenbrink, Chris

An antibody with Fab-constant domains exchanged for a pair of CH3 domains

Fab 恒定结构域与一对 CH3 结构域交换的抗体

Gordana Wozniak-Knopp, Gerhard Stadlmayr, Jan Walther Perthold, Katharina Stadlbauer, Mathias Gotsmy, Stefan Becker, Florian Rüker

Simulation of Reversible Protein-Protein Binding and Calculation of Binding Free Energies Using Perturbed Distance Restraints

利用扰动距离约束模拟可逆蛋白质-蛋白质结合并计算结合自由能

Perthold, Jan Walther; Oostenbrink, Chris

Recombinant Deg/HtrA proteases from Synechocystis sp. PCC 6803 differ in substrate specificity, biochemical characteristics and mechanism

来自集胞藻 PCC 6803 的重组 Deg/HtrA 蛋白酶在底物特异性、生化特性和机制方面存在差异。

Huesgen, Pitter F; Miranda, Helder; Lam, XuanTam; Perthold, Manuela; Schuhmann, Holger; Adamska, Iwona; Funk, Christiane