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人中期因子的溶液合成,一种由121个氨基酸残基组成、含有五个二硫键的新型肝素结合神经营养因子。

Solution synthesis of human midkine, a novel heparin-binding neurotrophic factor consisting of 121 amino acid residues with five disulphide bonds.

作者信息

Inui T, Bódi J, Kubo S, Nishio H, Kimura T, Kojima S, Maruta H, Muramatsu T, Sakakibara S

机构信息

Peptide Institute Inc., Protein Research Foundation, Osaka, Japan.

出版信息

J Pept Sci. 1996 Jan-Feb;2(1):28-39. doi: 10.1002/psc.45.

Abstract

Human midkine (hMK), a novel heparin-binding neurotrophic factor consisting of 121 amino acid residues with five intramolecular disulphide bonds, was synthesized by solution procedure in order to demonstrate the usefulness of our newly developed solvent system, a mixture of dichloromethane or chloroform and trifluoroethanol. The final protected 121-residue peptide was assembled from two large fully protected intermediates, Boc-(1-59)-OH and H-(60-121)-OBzl, in CHL/TFE(3:1, v/v) using water-soluble carbodiimide in the presence of HOOBt as coupling reagents. After removal of the protecting groups by HF followed by treatment with Hg(OAc)2 in 50% acetic acid, the fully deprotected peptide was subjected to the oxidative folding reaction. The final product was confirmed to have the correct disulphide structure from its tryptic peptide mapping and to possess the same biological activities as those of the natural product. In order to clarify the active region of the hMK molecule, the N-terminal half domains [(1-59) and (60-121)] were also synthesized by the same procedure used for the hMK synthesis. The C-half domain was confirmed to show the full pattern of bioactivities except for the neuronal cell survival activity, while the N-half one showed much less activity in general.

摘要

人中期因子(hMK)是一种新型的肝素结合神经营养因子,由121个氨基酸残基组成,含有5个分子内二硫键。为了证明我们新开发的溶剂体系(二氯甲烷或氯仿与三氟乙醇的混合物)的有效性,采用溶液法合成了该因子。最终的121个残基的保护肽由两个大的完全保护的中间体Boc-(1-59)-OH和H-(60-121)-OBzl在CHL/TFE(3:1, v/v)中,以水溶性碳二亚胺为偶联剂,在HOOBt存在下组装而成。用HF除去保护基团后,再在50%乙酸中用Hg(OAc)2处理,将完全脱保护的肽进行氧化折叠反应。通过胰蛋白酶肽图谱确认最终产物具有正确的二硫键结构,并具有与天然产物相同的生物活性。为了阐明hMK分子的活性区域,还采用与hMK合成相同的方法合成了N端半结构域[(1-59)和(60-121)]。C端半结构域除神经元细胞存活活性外,显示出完整的生物活性模式,而N端半结构域总体上活性较低。

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