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Heterogeneous distribution of lysine 6-aminotransferase during cephamycin C biosynthesis in Streptomyces clavuligerus demonstrated using green fluorescent protein as a reporter

机译:赖氨酸6-氨基转移酶在链霉素C菌霉菌中的异质分布在链霉菌霉素中使用绿色荧光蛋白作为记者展示

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The cellular distribution of the cephamycin biosynthetic enzyme lysine 6-aminotransferase (LAT) has been studied in Streptomyces clavuligerus hyphae by confocal microscopy using the S65T mutant of green fluorescent protein (GFP) as a reporter. LAT mediates the first committed step in the biosynthesis of the secondary metabolite cephamycin C by S. clavuligerus. The enzymic activity of LAT varies with time during the growth of S. clavuligerus in liquid medium. To investigate if this temporal variation occurs uniformly amongst all hyphae, S. clavuligerus was transformed with a plasmid containing the LAT-encoding gene translationally fused to the GFP-encoding gene. The LAT–GFP fusion product displayed fluorescence spectral characteristics of GFP, and showed similar temporal characteristics of LAT activity compared to the wild-type strain of S. clavuligerus. The transformed strain exhibited a heterogeneous distribution of fluorescence in mycelia grown in liquid cultures. This distribution varied significantly as the batch progressed: only a fraction of the mycelia fluoresced in the early growth phase, whereas nearly all hyphae fluoresced by the late growth phase. Thereafter, a non-uniform distribution of fluorescence was again observed in the declining growth phase. A large fraction of the non-fluorescent cells in the declining growth phase were found to be non-viable. Observations of S. clavuligerus colonies grown on solid agar also showed variation of LAT–GFP expression at different stages of growth. These observations in the solid phase can be explained in terms of nutrient deprivation and signalling molecules. The results suggest that physiological differentiation of S. clavuligerus mycelia leading to cephamycin C biosynthesis is both temporally and spatially distributed. The findings also revealed that the observed heterogeneity was independent of the position of individual cell compartments within the hypha. The potential of GFP as a reporter for the quantitative study of cephamycin biosynthesis at the cellular level has also been demonstrated.
机译:通过使用绿色荧光蛋白(GFP)的S65T突变体作为记者,通过共聚焦显微镜研究了Cephamycin生物合成酶赖氨酸6-氨基转移酶(LAT)的细胞分布。拉特介绍了S. Clavuligerus的二次代谢物Cephamycin C的生物合成中的第一个承诺的步骤。 LAT的酶活性随着时间的推移而在液体介质中的S. Clavuligerus生长期间随时间而变化。为了研究这种时间变异在所有菌丝中均匀地发生,S.Clavuligerus用含有平移到GFP编码基因的LAT编码基因的质粒转化。拉德 - GFP融合产物显示GFP的荧光光谱特性,与S. Clavuligerus的野生型菌株相比,LAT活性的相似时间特征。转化的菌株在液体培养物中生长的菌丝体中表现出荧光的异质分布。随着批量进行的,这种分布显着变化:仅在早期生长阶段的霉菌中荧光的一小部分,而几乎所有菌丝都被晚期生长阶段荧光。此后,在衰退的生长阶段中再次观察到荧光的不均匀分布。发现衰退的生长阶段中的非荧光细胞的大部分是不可行的。在固体琼脂上生长的S. clavuligerus菌落的观察结果也显示出不同阶段的LAT-GFP表达的变化。在固相中的这些观察结果可以在营养剥夺和信号分子方面解释。结果表明,导致Cephamycin C生物合成的S. clavuligerus菌丝体的生理分化在时间上和空间地分布。结果还表明,观察到的异质性与菌根内单个细胞隔室的位置无关。还证实了GFP作为报告者在细胞水平下定量研究Cephamycin生物合成的报告者的潜力。

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