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二乙烯基原叶绿素酸酯的合成。镁原卟啉IX单甲酯氧化环化酶系统的酶学性质。

Synthesis of divinyl protochlorophyllide. Enzymological properties of the Mg-protoporphyrin IX monomethyl ester oxidative cyclase system.

作者信息

Walker C J, Castelfranco P A, Whyte B J

机构信息

Department of Botany, University of California, Davis 95616.

出版信息

Biochem J. 1991 Jun 15;276 ( Pt 3)(Pt 3):691-7. doi: 10.1042/bj2760691.

Abstract

The resolution and reconstitution of the Mg-protoporphyrin IX monomethyl ester oxidative cyclase system into a supernatant and a pellet fraction was accomplished by a procedure involving salt treatment followed by osmotic shock. Recombination of pellet and supernatant fractions was required for cyclase activity. This restoration effect could be demonstrated using either Mg-protoporphyrin IX or Mg-protoporphyrin IX monomethyl ester as the cyclase substrate in the presence or absence of S-adenosylmethionine. Pretreatment of the pellet fraction with either 8-hydroxyquinoline or desferal mesylate inhibited cyclase activity, indicating that there is a heavy-metal-ion requirement in this fraction. The cyclase supernatant protein(s) was not internalized by Sephadex G-50 and did not bind to Blue Sepharose, suggesting that it has a molecular mass of over 30 kDa and that it does not bind the cofactor NADPH. The cyclase supernatant protein did bind to MgProtoMe2-bound Sepharose and could be eluted by raising the pH to 9.7 in the presence of 4 mM-n-octyl glucoside. The pH optimum of the cyclase was 9.0. About a 40-fold purification of the cyclase supernatant protein was achieved by a combination of (NH4)2SO4 fractionation and phenyl-Sepharose chromatography.

摘要

通过先进行盐处理然后进行渗透休克的程序,将镁原卟啉IX单甲酯氧化环化酶系统解析并重组到上清液和沉淀组分中。环化酶活性需要沉淀和上清液组分的重组。在存在或不存在S-腺苷甲硫氨酸的情况下,使用镁原卟啉IX或镁原卟啉IX单甲酯作为环化酶底物都可以证明这种恢复效果。用8-羟基喹啉或去铁胺甲磺酸盐对沉淀组分进行预处理会抑制环化酶活性,表明该组分中存在重金属离子需求。环化酶上清液蛋白不会被Sephadex G-50截留,也不会与蓝色琼脂糖结合,这表明其分子量超过30 kDa,并且不结合辅因子NADPH。环化酶上清液蛋白确实会与结合了MgProtoMe2的琼脂糖结合,并且可以在存在4 mM正辛基葡糖苷的情况下通过将pH提高到9.7来洗脱。环化酶的最适pH为9.0。通过硫酸铵分级分离和苯基琼脂糖层析相结合,环化酶上清液蛋白实现了约40倍的纯化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1336/1151060/615d05dc3ad4/biochemj00157-0129-a.jpg

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