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

Unveiling the Transgalactosylation Switch of a GH42 β‑Galactosidase from the Infant Isolate Bifidobacterium breve DSM20213

揭示婴儿分离株短双歧杆菌DSM20213中GH42 β-半乳糖苷酶的转半乳糖基化开关

Phirom-On, Konlarat; Vu-Le, Khanh-Trang; Sützl, Leander; Lehner, Benedikt; Whelan, David; Guerent, Lucile; Pasini, Irene; Schuh, Marc; de Ruiter, Anita; Blaukopf, Markus; Haltrich, Dietmar; Oostenbrink, Chris; Nguyen, Thu-Ha

Oxidized MIF is an Alzheimer's disease drug target relaying external risk factors to tau pathology

氧化型MIF是阿尔茨海默病药物靶点,它将外部风险因素传递给tau蛋白病理。

Andreas Müller-Schiffmann,Felix Torres,Anatoliy Kitaygorodskyy,Anand Ramani,Argyro Alatza,Sarah K Tschirner,Julien Orts,Arthur Haltrich,Ingrid Prikulis,Shaofeng Yu,Debendranath Dey,Suguna Mallesh,Dharma Prasad,Dennis Solas,Verian Bader,Annemieke Rozemuller,Selina Wray,Jay Gopalakrishnan,Roland Riek,Vishwanath R Lingappa,Carsten Korth

Production of Xylooligosaccharides (XOSs) with Anti-inflammatory and Prebiotic Activities Using Recombinant Endo-1,4-β-xylanases from Bacillus subtilis

利用枯草芽孢杆菌重组内切-1,4-β-木聚糖酶生产具有抗炎和益生元活性的木寡糖(XOS)

Cuong, Nguyen Cao; Haltrich, Dietmar; Boontawan, Apichat; Yamabhai, Montarop

Recombinant Human IgG1 Enhances Complement-Mediated Bacteriolysis and Macrophage Phagocytosis of Pseudomonas aeruginosa via Targeting Cell Surface Polysaccharides.

重组人 IgG1 通过靶向细胞表面多糖增强补体介导的细菌溶解和巨噬细胞对铜绿假单胞菌的吞噬作用。

Min Thae Thae, Guilbaud Audrey, Pecorari Frédéric, Panomket Pawana, Suttipanta Nitima, Haltrich Dietmar, Suntornthiticharoen Pattra, Yamabhai Montarop

Enhanced Postbiotic Metabolite GABA Production in Skim Milk Using Weissella cibaria UF-274 and Whole-Genome Analysis

利用魏斯氏菌UF-274和全基因组分析增强脱脂乳中后生元代谢物GABA的产生

Yogeswara, Ida Bagus Agung; Nursini, Ni Wayan; Kusumawati, I Gusti Ayu Wita; Fidriyanto, Rusli; Haltrich, Dietmar

A GH42 β‑Galactosidase from the Human Isolate Bifidobacterium breve DSM 20213: Biochemical and Transgalactosylation Properties Reveal the Potential for Galacto-oligosaccharides Synthesis

来自人源分离株短双歧杆菌DSM 20213的GH42 β-半乳糖苷酶:生化和转半乳糖基化特性揭示了其合成半乳寡糖的潜力

Vu-Le, Khanh-Trang; Phirom-On, Konlarat; Sripattanakul, Sineenat; Chu, Dinh Binh; Hann, Stephan; Blaukopf, Markus; Suetzl, Leander; Oostenbrink, Chris; Haltrich, Dietmar; Nguyen, Thu-Ha

Shifting the substrate scope of dimeric pyranose oxidase from monosaccharide to glycoside preference through oligomeric state modification.

通过寡聚状态修饰,将二聚吡喃糖氧化酶的底物范围从单糖偏好转变为糖苷偏好

Kostelac Anja, Hermann Enikő, Peterbauer Clemens, Oostenbrink Chris, Haltrich Dietmar

Endothelial defects unveil cardiovascular phenotype in iPSC-based disease modelling across three generations of a DiGeorge syndrome family

在基于诱导多能干细胞(iPSC)的疾病模型中,内皮缺陷揭示了迪乔治综合征家族三代人的心血管表型

Berecz, Tünde; Szabó, Brigitta; Fóthi, Ábel; Molnár, Andrea Ágnes; Árvai, Kristóf; Holub, Leila; Haltrich, Irén; Vincze, Katalin; Várady, György; Orbán, Tamás I; Kriston-Vizi, János; Merkely, Béla; Kerosuo, Laura; Réthelyi, János M; Földes, Gábor; Apáti, Ágota

Characterization of a Pyranose Oxidase/C-Glycoside Oxidase from Microbacterium sp. 3H14, Belonging to the Unexplored Clade II of Actinobacterial POx/CGOx.

对来自 Microbacterium sp. 3H14 的吡喃糖氧化酶/C-糖苷氧化酶进行了表征,该酶属于放线菌 POx/CGOx 的未探索分支 II

Martschini Andrea, Kostelac Anja, Haltrich Dietmar, Peterbauer Clemens K

Fungal Biodeterioration Risk in Monastic Libraries without Climate Control

缺乏气候控制的修道院图书馆存在真菌生物劣化风险

Derksen, Katharina; Brimblecombe, Peter; Piñar, Guadalupe; Waldherr, Monika; Graf, Alexandra; Haltrich, Martin; Querner, Pascal; Sterflinger, Katja