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

Development of plant extracts as substrates for untargeted transporter substrate identification in Xenopus oocytes

植物提取物作为底物在非洲爪蟾卵母细胞中非靶向转运蛋白底物鉴定中的应用

Theodorou, Christos; de-Prado-Parralejo, Victor; Xu, Deyang; Todoroki, Yoshimasa; Svenningsen, Louise; Mori, Tetsuya; Crocoll, Christoph; Hirai, Masami Yokota; Tsugawa, Hiroshi; Nour-Eldin, Hussam Hassan; Halkier, Barbara Ann

Isolation of a Novel Plant Growth-Promoting Dyella sp. From a Danish Natural Soil

从丹麦天然土壤中分离出一种新型植物促生菌 Dyella sp.

Dethier, Laura; Jespersen, J Rasmus P; Lloyd, Jemma; Pupi, Elena; Li, Ruochen; Zhou, Wanru; Liu, Fang; Bai, Yang; Halkier, Barbara Ann; Xu, Deyang

Systematic engineering pinpoints a versatile strategy for the expression of functional cytochrome P450 enzymes in Escherichia coli cell factories

系统工程为在大肠杆菌细胞工厂中表达功能性细胞色素P450酶提供了一种通用策略。

Poborsky, Michal; Crocoll, Christoph; Motawie, Mohammed Saddik; Halkier, Barbara Ann

Identification of key amino acid residues in AtUMAMIT29 for transport of glucosinolates

鉴定AtUMAMIT29中参与硫代葡萄糖苷转运的关键氨基酸残基

Meyer, Lasse; Crocoll, Christoph; Halkier, Barbara Ann; Mirza, Osman Asghar; Xu, Deyang

A Signature of Exaggerated Adipose Tissue Dysfunction in Type 2 Diabetes Is Linked to Low Plasma Adiponectin and Increased Transcriptional Activation of Proteasomal Degradation in Muscle

型糖尿病中脂肪组织功能障碍的过度特征与血浆脂联素水平低和肌肉中蛋白酶体降解的转录激活增加有关

Rugivan Sabaratnam, Vibe Skov, Søren K Paulsen, Stine Juhl, Rikke Kruse, Thea Hansen, Cecilie Halkier, Jonas M Kristensen, Birgitte F Vind, Bjørn Richelsen, Steen Knudsen, Jesper Dahlgaard, Henning Beck-Nielsen, Torben A Kruse, Kurt Højlund

Comparison of Genome and Plasmid-Based Engineering of Multigene Benzylglucosinolate Pathway in Saccharomyces cerevisiae

酿酒酵母中多基因苄基葡萄糖苷途径的基因组和质粒工程比较

Cuiwei Wang, Michal Poborsky, Christoph Crocoll, Christina Spuur Nødvig, Uffe Hasbro Mortensen, Barbara Ann Halkier

Bioengineering potato plants to produce benzylglucosinolate for improved broad-spectrum pest and disease resistance

利用生物工程技术改造马铃薯植株,使其产生苄基葡糖苷,从而提高其广谱抗虫抗病能力。

González-Romero, M E; Rivera, C; Cancino, K; Geu-Flores, F; Cosio, E G; Ghislain, M; Halkier, B A

Characterization of Arabidopsis CYP79C1 and CYP79C2 by Glucosinolate Pathway Engineering in Nicotiana benthamiana Shows Substrate Specificity Toward a Range of Aliphatic and Aromatic Amino Acids

通过对本氏烟草中硫代葡萄糖苷途径进行工程改造,对拟南芥CYP79C1和CYP79C2进行表征,结果表明其对多种脂肪族和芳香族氨基酸具有底物特异性。

Wang, Cuiwei; Dissing, Mads Møller; Agerbirk, Niels; Crocoll, Christoph; Halkier, Barbara Ann

In Arabidopsis thaliana Substrate Recognition and Tissue- as Well as Plastid Type-Specific Expression Define the Roles of Distinct Small Subunits of Isopropylmalate Isomerase

在拟南芥中,底物识别以及组织和质体类型特异性表达决定了异丙基苹果酸异构酶不同小亚基的作用。

Lächler, Kurt; Clauss, Karen; Imhof, Janet; Crocoll, Christoph; Schulz, Alexander; Halkier, Barbara Ann; Binder, Stefan

Correction: Origin and evolution of transporter substrate specificity within the NPF family

更正:NPF家族转运蛋白底物特异性的起源和演化

Jørgensen, Morten Egevang; Xu, Deyang; Crocoll, Christoph; Ernst, Heidi Asschenfeldt; Ramírez, David; Motawia, Mohammed Saddik; Olsen, Carl Erik; Mirza, Osman; Nour-Eldin, Hussam Hassan; Halkier, Barbara Ann