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

Scalable and multimodal brain angiogenesis and blood-brain barrier genetics by somatic mutagenesis.

通过体细胞诱变实现可扩展的多模式脑血管生成和血脑屏障遗传学。

Panji Jay Mehul, Germano Raoul Freitas Vale, America Michelle, Lou Liang, Lecordier Laurence, Tebabi Patricia, Martin Maud, Vanhollebeke Benoit

Engineered Wnt ligands enable blood-brain barrier repair in neurological disorders

工程化的 Wnt 配体能够修复神经系统疾病中的血脑屏障

Maud Martin, Simon Vermeiren, Naguissa Bostaille, Marie Eubelen, Daniel Spitzer, Marjorie Vermeersch, Caterina P Profaci, Elisa Pozuelo, Xavier Toussay, Joanna Raman-Nair, Patricia Tebabi, Michelle America, Aurélie De Groote, Leslie E Sanderson, Pauline Cabochette, Raoul F V Germano, David Torres, S

APOL1 C-Terminal Variants May Trigger Kidney Disease through Interference with APOL3 Control of Actomyosin

APOL1 C端变异体可能通过干扰APOL3对肌动蛋白-肌球蛋白的调控而引发肾脏疾病。

Sophie Uzureau,Laurence Lecordier,Pierrick Uzureau,Dorle Hennig,Jonas H Graversen,Fabrice Homblé,Pepe Ekulu Mfutu,Fanny Oliveira Arcolino,Ana Raquel Ramos,Rita M La Rovere,Tomas Luyten,Marjorie Vermeersch,Patricia Tebabi,Marc Dieu,Bart Cuypers,Stijn Deborggraeve,Marion Rabant,Christophe Legendre,Søren K Moestrup,Elena Levtchenko,Geert Bultynck,Christophe Erneux,David Pérez-Morga,Etienne Pays

A molecular mechanism for Wnt ligand-specific signaling

Wnt 配体特异性信号传导的分子机制

Marie Eubelen, Naguissa Bostaille, Pauline Cabochette, Anne Gauquier, Patricia Tebabi, Andra C Dumitru, Melanie Koehler, Philipp Gut, David Alsteens, Didier Y R Stainier, Abel Garcia-Pino, Benoit Vanhollebeke

APOLs with low pH dependence can kill all African trypanosomes

低 pH 依赖性的 APOL 可以杀死所有非洲锥虫

Frédéric Fontaine, Laurence Lecordier, Gilles Vanwalleghem, Pierrick Uzureau, Nick Van Reet, Martina Fontaine, Patricia Tebabi, Benoit Vanhollebeke, Philippe Büscher, David Pérez-Morga, Etienne Pays

Coupling of lysosomal and mitochondrial membrane permeabilization in trypanolysis by APOL1

APOL1 在锥虫分解过程中耦合溶酶体和线粒体膜通透性

Gilles Vanwalleghem, Frédéric Fontaine, Laurence Lecordier, Patricia Tebabi, Kristoffer Klewe, Derek P Nolan, Yoshiki Yamaryo-Botté, Cyrille Botté, Anneke Kremer, Gabriela Schumann Burkard, Joachim Rassow, Isabel Roditi, David Pérez-Morga, Etienne Pays

Characterization of the ligand-binding site of the transferrin receptor in Trypanosoma brucei demonstrates a structural relationship with the N-terminal domain of the variant surface glycoprotein

对布氏锥虫转铁蛋白受体配体结合位点的表征表明,其与变异表面糖蛋白的N端结构域存在结构关联。

Salmon, D; Hanocq-Quertier, J; Paturiaux-Hanocq, F; Pays, A; Tebabi, P; Nolan, D P; Michel, A; Pays, E

The ble resistance gene as a new selectable marker for Trypanosoma brucei: fly transmission of stable procyclic transformants to produce antibiotic resistant bloodstream forms

ble抗性基因作为布氏锥虫的新型选择标记:果蝇传播稳定的前环状转化体可产生抗生素耐药的血流型锥虫。

Jefferies, D; Tebabi, P; Le Ray, D; Pays, E

Transient activity assays of the Trypanosoma brucei variant surface glycoprotein gene promoter: control of gene expression at the posttranscriptional level

布氏锥虫变异表面糖蛋白基因启动子的瞬时活性测定:转录后水平的基因表达调控

Jefferies, D; Tebabi, P; Pays, E