首页> 外文OA文献 >Amplification and disruption of the phenylacetyl-CoA ligase gene of Penicillium chrysogenum encoding an aryl-capping enzyme that supplies phenylacetic acid to the isopenicillin N-acyltransferase
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Amplification and disruption of the phenylacetyl-CoA ligase gene of Penicillium chrysogenum encoding an aryl-capping enzyme that supplies phenylacetic acid to the isopenicillin N-acyltransferase

机译:产黄青霉的苯乙酰辅酶A连接酶基因的扩增和破坏,该基因编码将苯乙酸提供给异青霉素N-酰基转移酶的芳基加帽酶

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摘要

A gene, phl, encoding a phenylacetyl-CoA ligase was cloned from a phage library of Penicillium chrysogenum AS-P-78. The presence of five introns in the phl gene was confirmed by reverse transcriptase-PCR. The phl gene encoded an aryl-CoA ligase closely related to Arabidopsis thaliana 4-coumaroyl-CoA ligase. The Phl protein contained most of the amino acids defining the aryl-CoA (4-coumaroyl-CoA) ligase substrate-specificity code and differed from acetyl-CoA ligase and other acyl-CoA ligases. The phl gene was not linked to the penicillin gene cluster. Amplification of phl in an autonomous replicating plasmid led to an 8-fold increase in phenylacetyl-CoA ligase activity and a 35% increase in penicillin production. Transformants containing the amplified phl gene were resistant to high concentrations of phenylacetic acid (more than 2.5 g/l). Disruption of the phl gene resulted in a 40% decrease in penicillin production and a similar reduction of phenylacetyl-CoA ligase activity. The disrupted mutants were highly susceptible to phenylacetic acid. Complementation of the disrupted mutants with the phl gene restored normal levels of penicillin production and resistance to phenylacetic acid. The phenylacetyl-CoA ligase encoded by the phl gene is therefore involved in penicillin production, although a second aryl-CoA ligase appears to contribute partially to phenylacetic acid activation. The Phl protein lacks a peptide-carrier-protein domain and behaves as an aryl-capping enzyme that activates phenylacetic acid and transfers it to the isopenicillin N acyltransferase. The Phl protein contains the peroxisome-targeting sequence that is also present in the isopenicillin N acyltransferase. The peroxisomal co-localization of these two proteins indicates that the last two enzymes of the penicillin pathway form a peroxisomal functional complex.
机译:从产黄青霉AS-P-78的噬菌体文库中克隆了编码苯乙酰-CoA连接酶的基因ph1。通过逆转录酶-PCR证实了ph1基因中五个内含子的存在。 phl基因编码一个与拟南芥4-香豆酰基-CoA连接酶密切相关的芳基-CoA连接酶。 Phl蛋白包含大多数定义芳基-CoA(4-香豆酰基-CoA)连接酶底物特异性密码的氨基酸,与乙酰基-CoA连接酶和其他酰基-CoA连接酶不同。 phl基因未与青霉素基因簇相关。自主复制质粒中phl的扩增导致苯乙酰辅酶A连接酶活性增加8倍,青霉素产量增加35%。含有扩增的phl基因的转化子可抵抗高浓度的苯乙酸(大于2.5 g / l)。 phl基因的破坏导致青霉素产量降低40%,苯乙酰辅酶A连接酶活性降低。破坏的突变体对苯乙酸高度敏感。用phl基因对突变突变体进行补充,可恢复正常水平的青霉素生产和对苯乙酸的抗性。尽管第二个芳基-CoA连接酶似乎部分地促进了苯乙酸的活化,但是由phl基因编码的苯乙酰基-CoA连接酶也参与了青霉素的生产。 Phl蛋白缺少肽-载体-蛋白结构域,可充当芳基加帽酶,激活苯乙酸并将其转移至异青霉素N酰基转移酶。 Phl蛋白包含过氧体靶向序列,该序列也存在于异青霉素N酰基转移酶中。这两种蛋白的过氧化物酶体共定位表明青霉素途径的最后两种酶形成了过氧化物酶体功能复合物。

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