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精氨酸46位点切割的绵羊促黄体素α及其衍生片段的圆二色光谱分析

Circular dichroic spectroscopy of Arg46-nicked ovine lutropin alpha and derived fragments.

作者信息

Peng K C, Bousfield G R, Puett D, Ward D N

机构信息

Department of Biochemistry and Molecular Biology, University of Georgia, Athens 30602, USA.

出版信息

J Protein Chem. 1996 Aug;15(6):547-52. doi: 10.1007/BF01908536.

Abstract

The alpha subunit of ovine lutropin can be nicked with the endoproteinase Arg-C to give a single cleavage of the Arg46-Ser47 peptide bond. Following reduction by sulfitolysis, the N-terminal (residues 1-46) and C-terminal (residues 47-96) fragments can be separated and then recombined and reoxidized to yield a reconstituted nicked alpha that binds to the beta subunit but exhibits only 2-3% of the receptor-binding potency of intact lutropin. We have investigated nicked alpha, the two separated fragments, and reconstituted nicked alpha by circular dichroic spectroscopy and compared the spectra with those of intact alpha and reduced, reoxidized intact alpha. Between 200 and 225 nm the spectra of the two intact preparations are similar, as are the spectra of the two nicked preparations. However, the extremum negative ellipticities of the nicked preparations are substantially less than those of the intact preparations between 210 and 220 nm, indicating a loss in secondary structure accompanying cleavage of the Arg46-Ser47 bond. The sum of the spectra of the two fragments is significantly different from that of reconstituted nicked alpha, showing that the secondary structures in the isolated fragments are quite different from that of the reconstituted nicked protein. Reduced receptor binding by lutropin preparations containing a nicked alpha subunit may be attributable in part to the loss of secondary structure, probably helicity.

摘要

绵羊促黄体生成素的α亚基可用内肽酶Arg-C进行切口处理,从而使Arg46-Ser47肽键发生单一裂解。经亚硫酸氢盐还原后,可将N端(第1至46位氨基酸残基)和C端(第47至96位氨基酸残基)片段分离,然后重新组合并再氧化,以产生一种重组切口α亚基,它能与β亚基结合,但受体结合能力仅为完整促黄体生成素的2%至3%。我们通过圆二色光谱法研究了切口α亚基、两个分离片段以及重组切口α亚基,并将光谱与完整α亚基以及还原再氧化后的完整α亚基的光谱进行了比较。在200至225纳米之间,两种完整制剂的光谱相似,两种切口制剂的光谱也相似。然而,在210至220纳米之间,切口制剂的极值负椭圆率明显低于完整制剂,这表明伴随Arg46-Ser47键的裂解,二级结构有所丧失。两个片段的光谱总和与重组切口α亚基的光谱有显著差异,这表明分离片段中的二级结构与重组切口蛋白的二级结构有很大不同。含有切口α亚基的促黄体生成素制剂受体结合能力降低,部分原因可能是二级结构的丧失,可能是螺旋结构的丧失。

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