首页> 外文OA文献 >Exogenous methionine increases levels of mRNAs transcribed from pcbAB, pcbC, and cefEF genes, encoding enzymes of the cephalosporin biosynthetic pathway, in Acremonium chrysogenum.
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Exogenous methionine increases levels of mRNAs transcribed from pcbAB, pcbC, and cefEF genes, encoding enzymes of the cephalosporin biosynthetic pathway, in Acremonium chrysogenum.

机译:外源蛋氨酸提高了黄A顶毛虫从头孢菌素生物合成途径的编码酶pcbAB,pcbC和cefEF基因转录的mRNA水平。

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摘要

Methionine stimulated cephalosporin production in cultures of three different strains of Acremonium chrysogenum when added either at inoculation time or at 72 h to cells grown previously in the absence of methionine. When methionine was added at 72 h, the stimulation of cephalosporin biosynthesis was observed only 12 h later and required de novo protein synthesis. Methionine increased the levels of enzymes (isopenicillin N synthase and deacetylcephalosporin C acetyltransferase) expressed from genes (pcbC and cefG, respectively) located in the two clusters of cephalosporin biosynthesis genes in the wild-type A. chrysogenum strain and also in the two improved strains, CW19 and C10. Methionine-supplemented cells showed higher levels of transcripts of the four known genes (pcbAB, pcbC, cefEF and, to a slight extent, cefG) of the cephalosporin biosynthetic pathway than cells grown in the absence of methionine. The levels of the cefG transcript were much lower than those of the pcbAB, pcbC, and cefEF transcripts. The induction by methionine of transcription of the four cephalosporin biosynthesis genes and the known effect of this amino acid on the differentiation of A. chrysogenum indicate that methionine exerts a pleiotropic effect that coordinately regulates cephalosporin biosynthesis and differentiation.
机译:当在接种时间或72小时添加到以前在不存在蛋氨酸的情况下生长的细胞中时,蛋氨酸刺激了三种不同产黄曲霉菌株的培养物中头孢菌素的产生。当在72 h加入蛋氨酸时,仅在12 h后观察到头孢菌素生物合成的刺激作用,并且需要从头合成蛋白质。甲硫氨酸增加了野生型产黄青霉菌和两个改良菌株中头孢菌素生物合成基因的两个簇中的基因(分别为pcbC和cefG)表达的酶(异青霉素N合酶和去乙酰头孢菌素C乙酰转移酶)的水平。 ,CW19和C10。补充甲硫氨酸的细胞与没有甲硫氨酸生长的细胞相比,显示出头孢菌素生物合成途径的四个已知基因(pcbAB,pcbC,cefEF和少量cefG)的转录物水平更高。 cefG成绩单的水平远低于pcbAB,pcbC和cefEF成绩单的水平。通过蛋氨酸诱导四个头孢菌素生物合成基因的转录以及该氨基酸对产黄曲霉的分化的已知作用表明,蛋氨酸发挥多效性作用,协调调节头孢菌素的生物合成和分化。

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