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

Extraction, Purification, and Characterization of Olive (Olea europaea L., cv. Chemlal) Polyphenol Oxidase

橄榄 (Olea europaea L., cv. Chemlal) 多酚氧化酶的提取、纯化和表征

Ala Eddine Derardja, Matthias Pretzler, Malika Barkat, Annette Rompel

Speciation atlas of polyoxometalates in aqueous solutions

水溶液中多金属氧酸盐的形态图谱

Nadiia I Gumerova, Annette Rompel

Biochemical characterization of Dimocarpus longan polyphenol oxidase provides insights into its catalytic efficiency

龙眼多酚氧化酶的生化表征有助于了解其催化效率

Leela Ruckthong, Matthias Pretzler, Ioannis Kampatsikas, Annette Rompel

Expression, Purification, and Characterization of a Well-Adapted Tyrosinase from Peatlands Identified by Partial Community Analysis

通过部分群落分析鉴定的泥炭地中适应性强的酪氨酸酶的表达、纯化和表征

Felix Panis, Rudolf F Krachler, Regina Krachler, Annette Rompel

The Aquaporin-3-Inhibiting Potential of Polyoxotungstates

多钨酸盐对水通道蛋白 3 的抑制潜力

Catarina Pimpão, Inês V da Silva, Andreia F Mósca, Jacinta O Pinho, Maria Manuela Gaspar, Nadiia I Gumerova, Annette Rompel, Manuel Aureliano, Graça Soveral

Direct Single- and Double-Side Triol-Functionalization of the Mixed Type Anderson Polyoxotungstate [Cr(OH)3W6O21]6

混合型 Anderson 多氧化钨酸盐 [Cr(OH)3W6O21]6 的直接单侧和两侧三醇官能化

Nadiia I Gumerova, Tania Caldera Fraile, Alexander Roller, Gerald Giester, Magda Pascual-Borràs, C André Ohlin, Annette Rompel

Biochemical and structural characterization of tomato polyphenol oxidases provide novel insights into their substrate specificity

番茄多酚氧化酶的生化和结构表征为其底物特异性提供了新的见解

Ioannis Kampatsikas, Aleksandar Bijelic, Annette Rompel

Iron(II) and copper(II) paratungstates B: a single-crystal X-ray diffraction study

铁(II)和铜(II)仲钨酸盐 B:单晶 X 射线衍射研究

Nadiia I Gumerova, Anatolie Dobrov, Alexander Roller, Annette Rompel

Heterologous expression and characterization of functional mushroom tyrosinase (AbPPO4)

功能性蘑菇酪氨酸酶(AbPPO4)的异源表达及表征

Matthias Pretzler, Aleksandar Bijelic, Annette Rompel

X-ray Structure Analysis of Indazolium trans-[Tetrachlorobis(1H-indazole)ruthenate(III)] (KP1019) Bound to Human Serum Albumin Reveals Two Ruthenium Binding Sites and Provides Insights into the Drug Binding Mechanism

对吲唑鎓反式-[四氯双 (1H-吲唑) 钌 (III)] (KP1019) 与人血清白蛋白结合的 X 射线结构分析揭示了两个钌结合位点,并深入了解了药物结合机制

Aleksandar Bijelic, Sarah Theiner, Bernhard K Keppler, Annette Rompel