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免疫抑制剂免疫霉素的生物合成:哌啶酸掺入的酶学

Biosynthesis of the immunosuppressant immunomycin: the enzymology of pipecolate incorporation.

作者信息

Nielsen J B, Hsu M J, Byrne K M, Kaplan L

机构信息

Merck and Company, Rahway, New Jersey 07065.

出版信息

Biochemistry. 1991 Jun 11;30(23):5789-96. doi: 10.1021/bi00237a023.

DOI:10.1021/bi00237a023
PMID:2043618
Abstract

Immunomycin, an immunosuppressant closely related to FK 506, contains a pipecolate residue in amide linkage with an acyl group in its polyketide backbone. An enzyme activating L-pipecolic acid has been isolated from Streptomyces hygroscopicus var. ascomyceticus, which produces immunomycin. Purification results in a monomer of 170 kDa exhibiting N-terminal heterogeneity, apparently arising from proteolysis of a single species. It is a dimer under native conditions. The reaction appears to use an aminoacyl adenylate as an intermediate in the activating reaction, as do most activating enzymes involved in nonribosomal peptide synthesis. A range of pipecolate and proline analogues act as substrates in the pyrophosphate-ATP exchange resulting from the adenylation reaction. Several analogues are inhibitors of the subsequent thioesterification of the enzyme. Antibody raised to the purified enzyme was used to follow antigen during the course of fermentation. Maximal levels of antigen are found when synthesis of immunomycin is maximal. Ten of twelve immunomycin nonproducing mutants lack detectable pipecolate-activating enzyme in Western blots. From the enzymatic characteristics, substrate specificity, and immunological properties, we propose that we have isolated the enzyme responsible for activating pipecolic acid for immunomycin biosynthesis.

摘要

免疫霉素是一种与FK 506密切相关的免疫抑制剂,在其聚酮骨架中含有一个与酰基以酰胺键相连的哌啶酸残基。从产生免疫霉素的吸水链霉菌变种子囊菌中分离出一种激活L - 哌啶酸的酶。纯化后得到一个170 kDa的单体,其N端存在异质性,显然是由单一物种的蛋白水解引起的。在天然条件下它是二聚体。该反应似乎在激活反应中使用氨酰腺苷酸作为中间体,这与大多数参与非核糖体肽合成的激活酶一样。一系列哌啶酸和脯氨酸类似物在腺苷化反应产生的焦磷酸 - ATP交换中充当底物。几种类似物是该酶后续硫酯化反应的抑制剂。用针对纯化酶产生的抗体在发酵过程中追踪抗原。当免疫霉素合成达到最大值时,发现抗原水平最高。在十二株不产生免疫霉素的突变体中,有十株在蛋白质印迹中缺乏可检测到的哌啶酸激活酶。根据酶学特性、底物特异性和免疫学性质,我们提出已分离出负责激活哌啶酸以进行免疫霉素生物合成的酶。

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