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

Angiotensin-Converting Enzyme (ACE) Inhibitors and Statins Mitigate Negative Cardiovascular and Pulmonary Effects of Particulate Matter in a Mouse Exposure Model.

血管紧张素转换酶 (ACE) 抑制剂和他汀类药物可减轻颗粒物在小鼠暴露模型中对心血管和肺部的负面影响。

Junglas Tristan, Daiber Andreas, Kuntic Ivana, Valar Arijan, Zheng Jiayin, Oelze Matthias, Strohm Lea, Ubbens Henning, Hahad Omar, Bayo Jimenez Maria Teresa, Münzel Thomas, Kuntic Marin

Membrane interaction of cyanobacterial and chloroplast ESCRT-III proteins

蓝细菌和叶绿体ESCRT-III蛋白的膜相互作用

Kutzner, Mirka; Junglas, Benedikt; Sharma, Mayank; Sachse, Carsten; Schneider, Dirk

Differential inflammation, oxidative stress and cardiovascular damage markers of nano- and micro-particle exposure in mice: Implications for human disease burden

纳米和微米颗粒暴露对小鼠炎症、氧化应激和心血管损伤标志物的影响:对人类疾病负担的启示

Kuntic, Marin; Kuntic, Ivana; Cleppien, Dirk; Pozzer, Andrea; Nußbaum, David; Oelze, Matthias; Junglas, Tristan; Strohm, Lea; Ubbens, Henning; Daub, Steffen; Bayo Jimenez, Maria Teresa; Danckwardt, Sven; Berkemeier, Thomas; Hahad, Omar; Kohl, Matthias; Steven, Sebastian; Stroh, Albrecht; Lelieveld, Jos; Münzel, Thomas; Daiber, Andreas

Structural plasticity of bacterial ESCRT-III protein PspA in higher-order assemblies

细菌ESCRT-III蛋白PspA在高级组装体中的结构可塑性

Junglas, Benedikt; Hudina, Esther; Schönnenbeck, Philipp; Ritter, Ilona; Heddier, Anja; Santiago-Schübel, Beatrix; Huesgen, Pitter F; Schneider, Dirk; Sachse, Carsten

Structural basis for Vipp1 membrane binding: from loose coats and carpets to ring and rod assemblies

Vipp1膜结合的结构基础:从松散的层状结构到环状和杆状结构

Junglas, Benedikt; Kartte, David; Kutzner, Mirka; Hellmann, Nadja; Ritter, Ilona; Schneider, Dirk; Sachse, Carsten

The bacterial ESCRT-III PspA rods thin lipid tubules and increase membrane curvature through helix α0 interactions

细菌ESCRT-III PspA杆状蛋白通过与α0螺旋的相互作用,使脂质小管变细并增加膜曲率。

Hudina, Esther; Schott-Verdugo, Stephan; Junglas, Benedikt; Kutzner, Mirka; Ritter, Ilona; Hellmann, Nadja; Schneider, Dirk; Gohlke, Holger; Sachse, Carsten

The Asgard archaeal ESCRT-III system forms helical filaments and remodels eukaryotic-like membranes

阿斯加德古菌的ESCRT-III系统形成螺旋丝状结构并重塑类似真核生物的膜。

Melnikov, Nataly; Junglas, Benedikt; Halbi, Gal; Nachmias, Dikla; Zerbib, Erez; Gueta, Noam; Upcher, Alexander; Zalk, Ran; Sachse, Carsten; Bernheim-Groswasser, Anne; Elia, Natalie

Membrane binding of a cyanobacterial ESCRT-III protein crucially involves the helix α1-3 hairpin conserved in all superfamily members

蓝细菌ESCRT-III蛋白的膜结合关键在于所有超家族成员中保守的α1-3螺旋发夹结构。

Schlösser, Lukas; Kutzner, Mirka; Hellmann, Nadja; Kiesewetter, Denis; Bieber, Julia; Quarta, Ndjali; Ge, Xingwu; Goetze, Tom; Junglas, Benedikt; Matsumura, Fumiki; Bonn, Mischa; Gräter, Frauke; Sachse, Carsten; Liu, Lu-Ning; Schmidt, Carla; Aponte-Santamaría, Camilo; Schneider, Dirk

A versatile silica nanoparticle platform for induction of T cell responses - applied for therapeutic vaccination against HPV16 E6/E7-positive tumors in MHC-humanized mice

一种用于诱导T细胞反应的多功能二氧化硅纳米颗粒平台——应用于MHC人源化小鼠中针对HPV16 E6/E7阳性肿瘤的治疗性疫苗接种

Kruse, Sebastian; Fricke, Lia T; Zottnick, Samantha; Schlosser, Ann-Katrin; Grabowska, Agnieszka K; Feidt, Eva; Uhl, Philipp; Junglas, Ellen; Förster, Jonas D; Blersch, Josephine; Denner, Philip; Günter, Manina; Autenrieth, Stella E; Fava, Eugenio; Mier, Walter; Kübelbeck, Armin; Riemer, Angelika B

SKA2 regulated hyperactive secretory autophagy drives neuroinflammation-induced neurodegeneration

SKA2 调节过度活跃的分泌性自噬驱动神经炎症诱导的神经退行性变

Jakob Hartmann, Thomas Bajaj, Joy Otten, Claudia Klengel, Tim Ebert, Anne-Kathrin Gellner, Ellen Junglas, Kathrin Hafner, Elmira A Anderzhanova, Fiona Tang, Galen Missig, Lindsay Rexrode, Daniel T Trussell, Katelyn X Li, Max L Pöhlmann, Sarah Mackert, Thomas M Geiger, Daniel E Heinz, Roy Lardenoije,