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两种蓝藻中酰基载体蛋白的纯化与特性分析

Purification and characterization of acyl carrier protein from two cyanobacteria species.

作者信息

Froehlich J E, Poorman R, Reardon E, Barnum S R, Jaworski J G

机构信息

Department of Chemistry, Miami University, Oxford, OH 45056.

出版信息

Eur J Biochem. 1990 Nov 13;193(3):817-25. doi: 10.1111/j.1432-1033.1990.tb19405.x.

Abstract

The acyl carrier protein (ACP), an essential protein cofactor for fatty acid synthesis, has been isolated from two cyanobacteria: the filamentous, heterocystous, Anabaena variabilis (ATCC 29211) and the unicellular Synechocystis 6803 (ATCC 27184). Both ACPs have been purified to homogeneity utilizing a three-column procedure. Synechocystis 6803 ACP was purified 1800-fold with 67% yield, while A. variabilis ACP was purified 1040-fold with 50% yield. Yields of 13.0 micrograms ACP/g Synechocystis 6803 and 9.0 micrograms ACP/g A. variabilis were achieved. Amino acid analysis indicated that these ACPs were highly charged acidic proteins similar to other known ACPs. Sequence analysis revealed that both cyanobacterial ACPs were highly conserved with both spinach and Escherichia coli ACP at the phosphopantetheine prosthetic group region. Examining the probability of alpha-helix and beta-turn regions in various ACPs, showed that cyanobacterial ACPs were more closely related to E. coli ACP than spinach ACP I. Immunoblot analysis and a competitive binding assay for ACP illustrated that both ACPs bound poorly to spinach ACP I antibody. SDS/PAGE and native PAGE of Synechocystis 6803 ACP and A. variabilis ACP showed that cyanobacteria ACPs co-migrated with E. coli ACP and had relative molecular masses of 18,100 and 17,900 respectively. Both native and urea gel analysis of acyl-ACP products from fatty acid synthase reactions demonstrated that bacterial ACPs and plant ACP gave essentially the same metabolic products when assayed using either bacterial or plant fatty acid synthase. A. variabilis and Synechocystis 6803 ACP could be acylated using E. coli acyl ACP synthetase.

摘要

酰基载体蛋白(ACP)是脂肪酸合成中一种必需的蛋白质辅因子,已从两种蓝细菌中分离出来:丝状、异形胞的多变鱼腥藻(ATCC 29211)和单细胞的聚球藻6803(ATCC 27184)。两种ACP均采用三柱法纯化至同质。聚球藻6803 ACP纯化了1800倍,产率为67%,而异形鱼腥藻ACP纯化了1040倍,产率为50%。聚球藻6803的ACP产量为13.0微克/克,异形鱼腥藻的ACP产量为9.0微克/克。氨基酸分析表明,这些ACP是带高电荷的酸性蛋白质,与其他已知的ACP相似。序列分析显示,两种蓝细菌ACP在磷酸泛酰巯基乙胺辅基区域与菠菜和大肠杆菌的ACP高度保守。检查各种ACP中α-螺旋和β-转角区域的可能性表明,蓝细菌ACP与大肠杆菌ACP的关系比与菠菜ACP I更密切。ACP的免疫印迹分析和竞争性结合试验表明,两种ACP与菠菜ACP I抗体的结合都很差。聚球藻6803 ACP和异形鱼腥藻ACP的SDS/PAGE和天然PAGE显示,蓝细菌ACP与大肠杆菌ACP迁移率相同,相对分子质量分别为18100和17900。脂肪酸合酶反应的酰基-ACP产物的天然和尿素凝胶分析表明,使用细菌或植物脂肪酸合酶进行测定时,细菌ACP和植物ACP产生的代谢产物基本相同。异形鱼腥藻和聚球藻6803 ACP可用大肠杆菌酰基ACP合成酶进行酰化。

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