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A cell-penetrating protein designed for bimodal fluorescence and magnetic resonance imaging
ISSN号:2041-6520
期刊名称:Chemical Science
时间:2015
页码:6607-6613
相关项目:金属伴侣蛋白在铂类抗肿瘤药物作用中的机理研究
作者:
Qian, Junchao|Zhong, Kai|Qian, Yinfeng|Liu, Yangzhong|
同期刊论文项目
金属伴侣蛋白在铂类抗肿瘤药物作用中的机理研究
期刊论文 32
会议论文 12
同项目期刊论文
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Trans-platinum/thiazole complex interferes with Sp1 zinc-finger protein
铜/镍金属伴侣蛋白的研究进展
Interaction between Platinum Complexes and the C-Terminal Motif of Human Copper Transporter 1
Tris-(2-carboxyethyl)phosphine significantly promotes the reaction of cisplatin with Sp1 zinc finger
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PtCl2(phen) disrupts the metal ions binding to amyloid-beta peptide
Conserved residue modulates copper-binding properties through structural dynamics in human copper ch
Unexpected helicity control and helix inversion: homochiral helical nanotubes consisting of an achir
Platinum Drugs from Copper Chaperone to ATPase: the Mechanistic Implication of Drug Efflux Mediated
Cisplatin binds to human copper chaperone Cox17: the mechanistic implication of drug delivery to mit
The Reaction of Arsenite with Proteins Relies on Solution Conditions
Conserved residues that modulate protein trans-splicing of Npu DnaE split intein
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钯配合物对结核杆菌RecA intein蛋白质剪接的抑制作用
The reaction of a platinated methionine motif of CTR1 with cysteine and histidine is dependent upon
A Versatile pH‐Responsive Platformfor Intracellular Protein Delivery Using Calcium Phosphate Nanopar
Oral delivery of a platinum anticancer drug using lipid assisted polymeric nanoparticles.
Glutathione selectively modulates the binding of platinum drugs to human copper chaperone Cox17.
Effects of Buffers and pH on the Reaction of a trans-Platinum Complex with 5-Guanosine Monophosphate
The ligation of aspirin to cisplatin demonstrates significant synergistic effects on tumor cells
Copper binding modulates the platination of human copper chaperone Atox1 by antitumor trans-platinum
顺铂耐药的分子机制
Chemical and cellular investigations of trans-ammine-pyridine-dichlorido-platinum(II), the likely me
The preparation and catalytic property of palladiumchloride catalyst supported on organic–inorganic
铜转运蛋白C端金属结合域与Ag^+及Hg^2+的相互作用