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蓝细菌储备聚合物多聚-L-精氨酰-聚-L-天冬氨酸(藻青素)的生物合成:利用合成引物研究藻青素合成酶反应的机制

Biosynthesis of the cyanobacterial reserve polymer multi-L-arginyl-poly-L-aspartic acid (cyanophycin): mechanism of the cyanophycin synthetase reaction studied with synthetic primers.

作者信息

Berg H, Ziegler K, Piotukh K, Baier K, Lockau W, Volkmer-Engert R

机构信息

Biochemie der Pflanzen, Humboldt-Universität, Berlin, Germany; Universitätsklinikum Charité, Medizinische Immunologie, Berlin, Germany.

出版信息

Eur J Biochem. 2000 Sep;267(17):5561-70. doi: 10.1046/j.1432-1327.2000.01622.x.

Abstract

Biosynthesis of the cyanobacterial nitrogen reserve cyanophycin (multi-L-arginyl-poly-L-aspartic acid) is catalysed by cyanophycin synthetase, an enzyme that consists of a single kind of polypeptide. Efficient synthesis of the polymer requires ATP, the constituent amino acids aspartic acid and arginine, and a primer like cyanophycin. Using synthetic peptide primers, the course of the biosynthetic reaction was studied. The following results were obtained: (a) sequence analysis suggests that cyanophycin synthetase has two ATP-binding sites and hence probably two active sites; (b) the enzyme catalyses the formation of cyanophycin-like polymers of 25-30 kDa apparent molecular mass in vitro; (c) primers are elongated at their C-terminus; (d) the constituent amino acids are incorporated stepwise, in the order aspartic acid followed by arginine, into the growing polymer. A mechanism for the cyanophycin synthetase reaction is proposed; (e) the specificity of the enzyme for its amino-acid substrates was also studied. Glutamic acid cannot replace aspartic acid as the acidic amino acid, whereas lysine can replace arginine but is incorporated into cyanophycin at a much lower rate.

摘要

蓝细菌氮储备藻青素(多聚-L-精氨酰-聚-L-天冬氨酸)的生物合成由藻青素合成酶催化,该酶由单一类型的多肽组成。聚合物的高效合成需要ATP、组成氨基酸天冬氨酸和精氨酸以及像藻青素这样的引物。使用合成肽引物,研究了生物合成反应的过程。得到了以下结果:(a) 序列分析表明藻青素合成酶有两个ATP结合位点,因此可能有两个活性位点;(b) 该酶在体外催化形成表观分子量为25 - 30 kDa的类藻青素聚合物;(c) 引物在其C末端延长;(d) 组成氨基酸按天冬氨酸后接精氨酸的顺序逐步掺入到生长的聚合物中。提出了藻青素合成酶反应的机制;(e) 还研究了该酶对其氨基酸底物的特异性。谷氨酸不能替代天冬氨酸作为酸性氨基酸,而赖氨酸可以替代精氨酸,但以低得多的速率掺入藻青素中。

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