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| 1 | Functional tuning and expanding of myoglobin by rational protein design显示文摘Rational protein design is a powerful strategy,not only for revealing the structure and function relationship of natural metalloproteins,but also for creating artificial metalloproteins with improved properties and functions.Myoglobin(Mb),a small heme protein created by nature with diverse functions,has been shown to be an ideal scaffold for rational protein design.The progress reviewed herein includes fine-tuning its native functions of O2binding and transport,peroxidase activity and nitrite reductase(NIR)activity,and rational expanding its functionalities to peroxygenase,heme-copper oxidase(HCO),nitric oxide reductase(NOR),as well as hydroxylamine reductase.These studies have enhanced our understanding of how metalloproteins work in nature,and provided insights for rational design of functional metalloproteins for practical applications in the future. | LIN YingWu WANG JiangYun LU Yi | 2014 | Science China Chemistry2014,57,3: | 4 |
| 2 | Influence of drying and calcination temperatures for Ce-Cu-Al trimetallic composite catalyst on simultaneous removal H_(2)S and PH_(3):Experimental and DFT studies显示文摘This work explored the influences of the drying and calcination temperatures on a Ce-Cu-Al trimetallic composite catalyst for the simultaneous removal of H_(2)S and PH_(3).The effects of both temperatures on the structural features and activity were examined.The density functional theory method was used to calculate adsorption energies and further analyze their adsorption behavior on different slabs.Experiments revealed suitable drying and calcination temperatures to be 60 and 500℃,respectively.The capacity reached 323.8 and 288.1 mg/g.Adjusting drying temperature to 60℃is more inclined to form larger and structured grains of CuO.Rising calcinating temperature to 500℃could increase the grain size and redox capacity of CuO to promote performance.Higher temperatures would destroy the surface structure and lead to a crystal phase transformation,which was that the CuO and Al_(2)O_(3)were gradually recombined into CuAl_(2)O_(4)with a spinel structure.The exposed crystal planes of surficial CuO and CuAl_(2)O_(4)were determined according to characterization results.Calculation results showed that,compared with CuO(111),H_(2)S and PH_(3)have weaker adsorption strength on CuAl_(2)O_(4)(100)which is not conducive to their adsorption and removal. | Yingwu Wang Qiang Lin Chi Wang Kai Li Xin Sun Xin Song Yangyan Gao Ping Ning | 2021 | Journal of Environmental Sciences2021,33,6: | 2 |
| 3 | Surfactant-regulated acetylpyrene assemblies as fluorescent probes for identifying heme proteins in an aqueous solution显示文摘Heme proteins play various important roles in a variety of physiological and pathological processes.Surfactant assemblies have drawn great attention in fabricating fluorescent sensors to detect and identify proteins.In this study,an acetylpyrene fluorophore containing imidazole HP-1 was synthesized,and it could be well modulated by an anionic surfactant sodium dodecyl sulfate(SDS).The selected ensemble based on HP-1/SDS assemblies exhibited selective fluorescence sensing performance towards the heme proteins,including neuroglobin(Ngb),myoglobin(Mb)and cytochrome c(Cyt c).Besides,phospholipid DMPC vesicles as membrane models were particularly explored the association process between the heme protein Mb and membrane.The present work showed that Mb induced the lysis of DMPC liposomes visualized by transmission electron microscopy and optical microscope. | Binbin Yuan Shuangshuang Long Huamin Wang Qing Luo Ke Zeng Shuqin Gao Yingwu Lin | 2023 | Chinese Chemical Letters2023,34,5: | 0 |
| 4 | A Cu-modified active carbon fiber significantly promoted H_(2)S and PH_(3) simultaneous removal at a low reaction temperature显示文摘Poisonous gases,such as H_(2)S and PH3,produced by industrial production harm humans and damage the environment.In this study,H_(2)S and PH3 were simultaneously removed at low temperature by modified activated carbon fiber(ACF)catalysts.We have considered the active metal type,content,precursor,calcination,and reaction temperature.Experimental results exhibited that ACF could best perform by loading 15%Cu from nitrate.The optimized calcination temperature and reaction temperature separately were 550℃ and 90℃.Under these conditions,the most removal capacity could reach 69.7 mg/g and 132.1 mg/g,respectively.Characterization results showed that moderate calcination temperature(550℃)is suitable for the formation of the copper element on the surface of ACF,lower or higher temperature will generate more cuprous oxide.Although both can exhibit catalytic activity,the role of the copper element is significantly greater.Due to the exceptional dispersibility of copper(oxide),the ACF can still maintain the advantages of larger specific surface area and pore volume after loading copper,which is the main reason for better performance of related catalysts.Finally,increasing the copper loading amount can significantly increase the crystallinity and particle size of copper(oxide)on the ACF,thereby improving its catalytic performance.In situ IR found that the reason for the deactivation of the catalyst should be the accumulation of generated H_(2)PO_(4)^(-) and S0_(4)^(2-)(H_(2)0)^(6) which could poison the catalyst. | Yingwu Wang Ping Ning Ruheng Zhao Kai Li Chi Wang Xin Sun Xin Song Qiang Lin | 2021 | Frontiers of Environmental Science & Engineering2021,15,6: | 0 |