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

Correction to "DNA-Programmable Protein Degradation: Dynamic Control of Proteolysis-Targeting Chimera Activity via DNA Hybridization and Strand Displacement"

对“DNA可编程蛋白质降解:通过DNA杂交和链置换动态控制蛋白水解靶向嵌合体活性”一文的更正

Kashyap, Disha; Haider, Shozeb; Milne, Thomas A; Booth, Michael J

The effect of PEGylation on surface tethering of liposomes via DNA nanotechnology

聚乙二醇化对DNA纳米技术介导的脂质体表面锚定的影响

Gaston, James P; Meepat, Sreelakshmi; Islam, Md Sirajul; Li, Jiahe; Daljit Singh, Jasleen Kaur; Booth, Michael J; Wickham, Shelley Fj; Baker, Matthew Ab

Magnetic activation of spherical nucleic acids enables the remote control of synthetic cells

球形核酸的磁激活可实现对合成细胞的远程控制

Parkes, Ellen; Al Samad, Assala; Mazzotti, Giacomo; Newell, Charlie; Ng, Brian; Radford, Amy; Booth, Michael J

Harnessing BET-Bromodomain Assisted Nuclear Import for Targeted Subcellular Localization and Enhanced Efficacy of Antisense Oligonucleotides

利用BET溴结构域辅助核输入实现反义寡核苷酸的靶向亚细胞定位和增强疗效

Kashyap, Disha; Cadeddu, Martina; Oliver, Peter L; Milne, Thomas A; Booth, Michael J

DNA-Programmable Protein Degradation: Dynamic Control of Proteolysis-Targeting Chimera Activity via DNA Hybridization and Strand Displacement

DNA可编程蛋白质降解:通过DNA杂交和链置换动态控制蛋白水解靶向嵌合体活性

Kashyap, Disha; Haider, Shozeb; Milne, Thomas A; Booth, Michael J

Engineering antisense oligonucleotides for targeted mRNA degradation through lysosomal trafficking

通过溶酶体运输改造反义寡核苷酸,以实现靶向mRNA降解。

Kashyap, Disha; Milne, Thomas A; Booth, Michael J

Nucleic Acid Conjugates: Unlocking Therapeutic Potential

核酸缀合物:释放治疗潜力

Kashyap, Disha; Booth, Michael J

Orthogonal Light-Activated DNA for Patterned Biocomputing within Synthetic Cells

用于合成细胞内图案化生物计算的正交光激活DNA

Hartmann, Denis; Chowdhry, Razia; Smith, Jefferson M; Booth, Michael J

Precise, Orthogonal Remote-Control of Cell-Free Systems Using Photocaged Nucleic Acids

利用光笼核酸对无细胞系统进行精确、正交的远程控制

Mazzotti, Giacomo; Hartmann, Denis; Booth, Michael J

Sequence-independent, site-specific incorporation of chemical modifications to generate light-activated plasmids.

序列非依赖性、位点特异性地引入化学修饰,以生成光激活质粒

Chung Khoa, Booth Michael J