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一种通过GFP结合蛋白强化三分子荧光互补方法的建立
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作者 谢亮 王琼 +5 位作者 程小玲 彭静 王美 刘梦雯 屈品均 辛化伟 《生物技术》 北大核心 2017年第3期252-258,共7页
[目的]将改造后的GFP(super-fold GFP,简写为sf GFP)作为三分子荧光互补技术的基础,通过应用多种GFP结合蛋白(GFP binding protein,GBP),筛选并验证可强化荧光互补作用的GFP结合蛋白。[方法]将sf GFP拆分为三部分(GFP1-9,GFP10和GFP11)... [目的]将改造后的GFP(super-fold GFP,简写为sf GFP)作为三分子荧光互补技术的基础,通过应用多种GFP结合蛋白(GFP binding protein,GBP),筛选并验证可强化荧光互补作用的GFP结合蛋白。[方法]将sf GFP拆分为三部分(GFP1-9,GFP10和GFP11),建立GFP三分子荧光互补技术体系,利用多种GFP结合蛋白对GFP三分子荧光互补技术进行试验,通过观察荧光变化筛选可强化荧光互补作用的GFP结合蛋白。[结果]发现DARPin-GFP、GFP-enhancer和Nbsf GFP这三种GFP结合蛋白能够与GFP共定位并对GFP三分子重组装有增强效果,其中GFP-enhancer与Nbsf GFP增强效果约为原荧光强度4倍,DARPin-GFP约为2倍。[结论]GFP结合蛋白可作为一种新手段,使以GFP三分子荧光互补技术为基础的蛋白质-蛋白质相互作用研究的检测效率和灵敏度得到提高。 展开更多
关键词 super-folder GFP GFP结合蛋白 三分子荧光互补技术
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Two‑Level Biomimetic Designs Enable Intelligent Stress Dispersion for Super‑Foldable C/NiS Nanofiber Free‑Standing Electrode
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作者 Guangtao Zan Tong Wu +6 位作者 Wenya Dong Junchen Zhou Teng Tu Ruoxuan Xu Yun Chen Ying Wang Qingsheng Wu 《Advanced Fiber Materials》 SCIE EI 2022年第5期1177-1190,共14页
Due to the lack of in-depth understanding about the folding issues of the electronic materials,it is a huge challenge to pre-pare a super-foldable and highly electrochemical faradic electrode.Here,inspired from from t... Due to the lack of in-depth understanding about the folding issues of the electronic materials,it is a huge challenge to pre-pare a super-foldable and highly electrochemical faradic electrode.Here,inspired from from the fully nimble structures of cuit cocoons and cockscomb petals,with two-level biomimetic design,for the first time we prepared a super-foldable and electrochemically functional freestanding cathode,made of C-fiber@NiS-cockscomb(SFCNi).In virtue of its nimble biomi-metic structures,SFCNi can remarkably sustain over 100,000 times,repeated true-folding without composite fibers fracture,functional matters detachment,conductivity degradation,or electrochemical performance change.The main mechanism behind these behaviors was disclosed by Real-time scanning electron microscopy and mechanical simulations,on the folding process.Results unveil that the cockscomb-like NiS with atomic thickness can deform freely due to the need of bending,and the cuit-cocoon-like SFCNi can generate an“ε-shape”folding structure at the crease.Such a smart self-adaptive deforma-tion capability can effectively reduce the effect of stresses and local excessive deformations,so that the chemical bonds can preserve their interaction,and the material won’t fracture.This subtle and exceptional mechanical behavior realizes a super-foldable property.The two-level biomimetic design strategy is a novel method for fabrication of super-foldable composite electrodes and integrated multi-functional super-foldable devices. 展开更多
关键词 super-foldable Biomimetic Nanofiber network Stress dispersion Electrode
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