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首页> 外文期刊>Chembiochem: A European journal of chemical biology >In Vitro Investigation of Crosstalk between Fatty Acid and Polyketide Synthases in the Andrimid Biosynthetic Assembly Line
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In Vitro Investigation of Crosstalk between Fatty Acid and Polyketide Synthases in the Andrimid Biosynthetic Assembly Line

机译:雄性生物合成组装线中脂肪酸和聚酮化合物合酶之间的串扰的体外研究

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摘要

Andrimid (Adm) synthase, which belongs to the type II system of enzymes, produces Adm in Pantoea agglomerans. The adm biosynthetic gene cluster lacks canonical acyltransferases (ATs) to load the malonyl group to acyl carrier proteins (ACPs), thus suggesting that a malonyl-CoA ACP transacylase (MCAT) from the fatty acid synthase (FAS) complex provides the essential AT activity in Adm biosynthesis. Here we report that an MCAT is essential for catalysis of the transacylation of malonate from malonyl-CoA to AdmA polyketide synthase (PKS) ACP in vitro. Catalytic self-malonylation of AdmA (PKS ACP) was not observed in reactions without MCAT, although many type II PKS ACPs are capable of catalyzing self-acylation. This lack of self-malonylation was explained by amino acid sequence analysis of the AdmA PKS ACP and the type II PKS ACPs. The results show that MCAT from the organism's FAS complex can provide the missing AT activity in trans, thus suggesting a protein-protein interaction between the fatty acid and polyketide synthases in the Adm assembly line.
机译:属于II型酶系统的Andrimid(Adm)合酶在聚结泛菌中产生Adm。 adm生物合成基因簇缺乏典型的酰基转移酶(ATs),无法将丙二酰基负载到酰基载体蛋白(ACP),因此表明来自脂肪酸合酶(FAS)复合物的丙二酰-CoA ACP转酰基酶(MCAT)提供了基本的AT活性在Adm生物合成中。在这里我们报告说,MCAT对于催化丙二酸从丙二酰辅酶A到AdmA聚酮化合物合酶(PKS)ACP的转酰作用至关重要。在没有MCAT的反应中,未观察到AdmA(PKS ACP)的催化自我丙二酰化反应,尽管许多II型PKS ACP都能催化自我酰化反应。通过AdmA PKS ACP和II型PKS ACP的氨基酸序列分析可以解释这种自我丙二酰化的缺乏。结果表明,来自生物体FAS复合体的MCAT可以反式提供缺失的AT活性,因此表明Adm装配线中脂肪酸与聚酮化合物合酶之间存在蛋白质-蛋白质相互作用。

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