With many bioactive non-ribosomal peptides and polyketides produced in fungi, studies of their biosyntheses are an active area of research. Practical limitations of working with mega-dalton synthetases including cell lysis and protein extraction to recombinant gene and pathway expression has slowed understanding of many secondary metabolic processes relative to bacterial counterparts. Recent advances in accessing fungal biosynthetic machinery are beginning to change this. Here we describe the successes of some studies of thiotemplate biosynthesis in fungal systems, along with very recent advances in chemical tagging and mass spectrometric strategies to selectively study biosynthetic conveyer belts in isolation, and within a few years, in endogenous fungal proteomes.

译文

:随着真菌中产生许多具有生物活性的非核糖体肽和聚酮化合物,对其生物合成的研究是一个活跃的研究领域。兆达尔顿合成酶的实际操作局限性,包括细胞裂解和重组基因和途径表达的蛋白质提取,相对于细菌对应物,减缓了对许多次生代谢过程的理解。在获得真菌生物合成机制方面的最新进展开始改变这一状况。在这里,我们描述了在真菌系统中硫模板生物合成的一些研究的成功,以及化学标记和质谱策略的最新进展,以选择性地研究内源真菌蛋白质组中的孤立生物合成输送带,并在几年之内进行了研究。

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