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Mechanism of simultaneously refolding and purification of proteins by hydrophobic interaction chromatographic unit and applications 被引量:2
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作者 耿信笃 白泉 《Science China Chemistry》 SCIE EI CAS 2002年第6期655-669,共16页
The hydrophobic amino acid residues of a denatured protein molecule tend to react with the particles of the stationary phase of hydrophobic interaction chromatography (STHIC). These hydrophobic interactions prevent th... The hydrophobic amino acid residues of a denatured protein molecule tend to react with the particles of the stationary phase of hydrophobic interaction chromatography (STHIC). These hydrophobic interactions prevent the denatured protein molecules from aggregating with each other. The STHIC can provide high enough energy to a denatured protein molecule to make it dehydration and to refold it into its native or various intermediate states. The outcome not only depends on the specific interactions between amino acids, the structure of STHIC, but also depends on the association between the STHIC and mobile phase. The mechanism of protein refolding and the principle of its quality control by HPHIC were also presented. By appropriate selection of the Chromatographie condition, several denatured proteins can be refolded and separated simultaneously in a single Chromatographic run. A specially designed unit, with diameter much larger than its length, was designed and employed for both laboratory and preparative scales. That unit for the simultaneous renaturation and purification of proteins (USRPP) had the following four functions: to completely remove denaturant, to renature proteins, to separate renatured proteins from impurities, and to easily recycle waste denaturant. The efficiencies of refolding and purification of proteins by the USRPP are almost comparable to a usual long Chromatographie column in laboratory. In preparative scale, USRPP can be easily, rapidly, and economically applied requiring a low pressure gradient. As an example, recombinant human interferon-γ is employed to elucidate the application of the preparative USRPP. 展开更多
关键词 protein folding mechanism of protein folding quality control hydrophobic interaction Chromatographie unit PURIFICATION biotechnology INTERFERON-Γ
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Syntheses,Structures and Properties of Two New Coordination Polymers with Flexible Ligands as Linkers
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作者 姚华刚 卢秀霞 +3 位作者 郑佳欣 萧永乐 林焕杰 蔡玮怡 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2016年第1期107-113,共7页
Two new coordination polymers,[ZnL1]n(1,H2L1 = 5-(4-pyridyl)-methoxyl isophthalic acid) and[Ni(L2)2(H2O)4]n(2,HL2 = 4-(pyridin-4-ylmethoxy)benzolic acid),have been synthesized and characterized by elementa... Two new coordination polymers,[ZnL1]n(1,H2L1 = 5-(4-pyridyl)-methoxyl isophthalic acid) and[Ni(L2)2(H2O)4]n(2,HL2 = 4-(pyridin-4-ylmethoxy)benzolic acid),have been synthesized and characterized by elemental analysis,PXRD,IR spectra,and single-crystal X-ray diffraction.Compound 1 has a three-dimensional framework constructed by 6-bridged L1^2- anions connecting the Zn2(O2C)4 paddlewheel-like units.Compound 2 contains a mononuclear molecular unit,and the central nickel atom adopts a slightly distorted octahedral geometry by two nitrogen atoms from different L2^- ligands and four oxygen atoms from water molecules.These molecular units link each other via four types of O-H…O hydrogen bonds to form an extended three-dimensional(3D) supramolecular network.The thermal and photoluminescent properties of 1 and 2 have also been investigated. 展开更多
关键词 Zn(Ⅱ) coordination polymer paddlewheel unit flexible ligand hydrogen interaction
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