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

Stem cell-based approach to identify regulatory TFs during mammalian cell differentiation

利用干细胞方法鉴定哺乳动物细胞分化过程中的调控转录因子

Pei, Yingzhen; Li, Siyi; Garipler, Görkem; Kamimoto, Kenji; Mazzoni, Esteban O

Genome-wide screening identifies Trim33 as an essential regulator of dendritic cell differentiation

全基因组筛选确定Trim33是树突状细胞分化的重要调节剂

Ioanna Tiniakou, Pei-Feng Hsu, Lorena S Lopez-Zepeda, Görkem Garipler, Eduardo Esteva, Nicholas M Adams, Geunhyo Jang, Chetna Soni, Colleen M Lau, Fan Liu, Alireza Khodadadi-Jamayran, Tori C Rodrick, Drew Jones, Aristotelis Tsirigos, Uwe Ohler, Mark T Bedford, Stephen D Nimer, Vesa Kaartinen, Esteba

Essential transcription factors for induced neuron differentiation

诱导神经元分化的必需转录因子

Congyi Lu #, Görkem Garipler #, Chao Dai #, Timothy Roush, Jose Salome-Correa, Alex Martin, Noa Liscovitch-Brauer, Esteban O Mazzoni, Neville E Sanjana

Capybara: A computational tool to measure cell identity and fate transitions

Capybara:一种用于测量细胞身份和命运转变的计算工具

Wenjun Kong,Yuheng C Fu,Emily M Holloway,Görkem Garipler,Xue Yang,Esteban O Mazzoni,Samantha A Morris

The BTB transcription factors ZBTB11 and ZFP131 maintain pluripotency by repressing pro-differentiation genes

BTB转录因子ZBTB11和ZFP131通过抑制促分化基因来维持多能性。

Görkem Garipler,Congyi Lu,Alexis Morrissey,Lorena S Lopez-Zepeda,Yingzhen Pei,Simon E Vidal,Ana Paula Zen Petisco Fiore,Begüm Aydin,Matthias Stadtfeld,Uwe Ohler,Shaun Mahony,Neville E Sanjana,Esteban O Mazzoni

Proneural factors Ascl1 and Neurog2 contribute to neuronal subtype identities by establishing distinct chromatin landscapes

促神经因子Ascl1和Neurog2通过建立不同的染色质结构来促进神经元亚型特征的形成。

Begüm Aydin ,Akshay Kakumanu ,Mary Rossillo ,Mireia Moreno-Estellés ,Görkem Garipler ,Niels Ringstad ,Nuria Flames ,Shaun Mahony ,Esteban O Mazzoni

A Multi-step Transcriptional and Chromatin State Cascade Underlies Motor Neuron Programming from Embryonic Stem Cells

多步骤转录和染色质状态级联是胚胎干细胞运动神经元编程的基础

Silvia Velasco #, Mahmoud M Ibrahim #, Akshay Kakumanu #, Görkem Garipler, Begüm Aydin, Mohamed Ahmed Al-Sayegh, Antje Hirsekorn, Farah Abdul-Rahman, Rahul Satija, Uwe Ohler, Shaun Mahony, Esteban O Mazzoni

Mitochondrial Dysfunction Plus High-Sugar Diet Provokes a Metabolic Crisis That Inhibits Growth

线粒体功能障碍加上高糖饮食会引发代谢危机,阻碍生长

Esko Kemppainen, Jack George, Görkem Garipler, Tea Tuomela, Essi Kiviranta, Tomoyoshi Soga, Cory D Dunn, Howard T Jacobs

Reduced Glucose Sensation Can Increase the Fitness of Saccharomyces cerevisiae Lacking Mitochondrial DNA.

葡萄糖感知能力降低可提高缺乏线粒体 DNA 的酿酒酵母的适应性

Akdoğan Emel, Tardu Mehmet, Garipler Görkem, Baytek Gülkız, Kavakli İ Halil, Dunn Cory D

Deletion of conserved protein phosphatases reverses defects associated with mitochondrial DNA damage in Saccharomyces cerevisiae

酿酒酵母中保守蛋白磷酸酶的缺失可逆转与线粒体DNA损伤相关的缺陷

Garipler, Görkem; Mutlu, Nebibe; Lack, Nathan A; Dunn, Cory D