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

ABE9 fused to SpRY Cas9 nickase enables precise generation of bystander free mouse models

ABE9 与 SpRY Cas9 切口酶融合,可实现精确构建无旁观者效应的小鼠模型。

Ong, Jun Kai; Bhunia, Sayari; Hilbert, Beate; Kirschner, Vanessa; Duglosz, Sascha; Zimmermann, Frank; Freichel, Marc; Cornean, Alex

Heterogeneity of synaptic connectivity in the fly visual system

果蝇视觉系统中突触连接的异质性

Jacqueline Cornean #,Sebastian Molina-Obando #,Burak Gür,Annika Bast,Giordano Ramos-Traslosheros,Jonas Chojetzki,Lena Lörsch,Maria Ioannidou,Rachita Taneja,Christopher Schnaitmann,Marion Silies

Streamlined Generation of CRISPR/Cas9-Mediated Single-Cell Knockout Clones in Murine Cell Lines.

简化小鼠细胞系中 CRISPR/Cas9 介导的单细胞敲除克隆的生成

Hub Tobias, Cornean Alex, Round Kellen, Fleming Thomas, Freichel Marc, Medert Rebekka

CRISPR-based knockout and base editing confirm the role of MYRF in heart development and congenital heart disease

基于 CRISPR 的基因敲除和碱基编辑证实了 MYRF 在心脏发育和先天性心脏病中的作用

Doering, Lino; Cornean, Alex; Thumberger, Thomas; Benjaminsen, Joergen; Wittbrodt, Beate; Kellner, Tanja; Hammouda, Omar T; Gorenflo, Matthias; Wittbrodt, Joachim; Gierten, Jakob

Precise in vivo functional analysis of DNA variants with base editing using ACEofBASEs target prediction

使用 ACEofBASEs 靶标预测对碱基编辑的 DNA 变异进行精确的体内功能分析

Alex Cornean #, Jakob Gierten #, Bettina Welz #, Juan Luis Mateo, Thomas Thumberger, Joachim Wittbrodt

Boosting targeted genome editing using the hei-tag

利用 hei-tag 促进靶向基因组编辑

Thomas Thumberger #, Tinatini Tavhelidse-Suck #, Jose Arturo Gutierrez-Triana #, Alex Cornean, Rebekka Medert, Bettina Welz, Marc Freichel, Joachim Wittbrodt

Do Polymorphisms of the TERT, GSTM1, and GSTT1 Genes Increase Laryngeal Cancer Susceptibility in Smokers of Romanian Descent?

TERT、GSTM1 和 GSTT1 基因的多态性是否会增加罗马尼亚裔吸烟者患喉癌的风险?

Cornean, Corina Iulia; Catana, Andreea; Maniu, Alma Aurelia

Positively charged residues at the channel mouth boost single-file water flow

通道口处的带正电荷的残留物促进单列水流

Horner, Andreas; Siligan, Christine; Cornean, Alex; Pohl, Peter

Loss of MTG16a (CBFA2T3), a novel rDNA repressor, leads to increased ribogenesis and disruption of breast acinar morphogenesis

新型rDNA抑制因子MTG16a(CBFA2T3)的缺失会导致核糖体生成增加和乳腺腺泡形态发生紊乱。

Paşca, Sergiu P; Dronca, Eleonora; Nemeş, Bogdan; Kaucsár, Tamás; Endreffy, Emõke; Iftene, Felicia; Benga, Ileana; Cornean, Rodica; Dronca, Maria; Moreau, Philippe; Flajollet, Sébastien; Carosella, Edgardo D; Penumathsa, S Varma; Thirunavukkarasu, M; Zhan, L; Maulik, G; Menon, V P; Bagchi, D; Maulik, N; Kartikasari, Apriliana E R; Wagener, Frank A D T G; Yachie, Akihiro; Wiegerinck, Erwin T G; Kemna, Erwin H J M; Winkels, Dorine W; Cai, Jun; Yi, Fang-Fang; Bian, Zhou-Yan; Shen, Di-Fei; Yang, Long; Yan, Ling; Tang, Qi-Zhu; Yang, Xin-Chun; Li, Hongliang; Hui, Kelvin KW; Liadis, Nicole; Robertson, Jennifer; Kanungo, Anish; Henderson, Jeffrey T; Takkunen, Minna; Hukkanen, Mika; Liljeström, Mikko; Grenman, Reidar; Virtanen, Ismo; Rossetti, Stefano; Hoogeveen, André T; Esposito, Joseph; Sacchi, Nicoletta

One carbon metabolism disturbances and the C677T MTHFR gene polymorphism in children with autism spectrum disorders

自闭症谱系障碍儿童的单碳代谢紊乱和MTHFR基因C677T多态性

Paşca, Sergiu P; Dronca, Eleonora; Kaucsár, Tamás; Craciun, Elena C; Endreffy, Emõke; Ferencz, Beatrix K; Iftene, Felicia; Benga, Ileana; Cornean, Rodica; Banerjee, Ruma; Dronca, Maria