Robinson Sarah L, Panaccione Daniel G
Division of Plant and Soil Sciences, West Virginia University, Morgantown, WV 26506, USA.
Toxins (Basel). 2015 Jan 20;7(1):201-18. doi: 10.3390/toxins7010201.
Several fungi in two different families--the Clavicipitaceae and the Trichocomaceae--produce different profiles of ergot alkaloids, many of which are important in agriculture and medicine. All ergot alkaloid producers share early steps before their pathways diverge to produce different end products. EasA, an oxidoreductase of the old yellow enzyme class, has alternate activities in different fungi resulting in branching of the pathway. Enzymes beyond the branch point differ among lineages. In the Clavicipitaceae, diversity is generated by the presence or absence and activities of lysergyl peptide synthetases, which interact to make lysergic acid amides and ergopeptines. The range of ergopeptines in a fungus may be controlled by the presence of multiple peptide synthetases as well as by the specificity of individual peptide synthetase domains. In the Trichocomaceae, diversity is generated by the presence or absence of the prenyl transferase encoded by easL (also called fgaPT1). Moreover, relaxed specificity of EasL appears to contribute to ergot alkaloid diversification. The profile of ergot alkaloids observed within a fungus also is affected by a delayed flux of intermediates through the pathway, which results in an accumulation of intermediates or early pathway byproducts to concentrations comparable to that of the pathway end product.
两个不同科(麦角菌科和曲霉菌科)中的几种真菌会产生不同类型的麦角生物碱,其中许多在农业和医学领域都很重要。所有麦角生物碱产生菌在其途径 diverge 以产生不同终产物之前,都有共同的早期步骤。EasA 是一种老黄色酶类的氧化还原酶,在不同真菌中具有不同的活性,导致途径发生分支。分支点之后的酶在不同谱系中有所不同。在麦角菌科中,麦角酰肽合成酶的存在与否及其活性会产生多样性,这些酶相互作用形成麦角酰胺和麦角肽。真菌中麦角肽的范围可能受多种肽合成酶的存在以及单个肽合成酶结构域的特异性控制。在曲霉菌科中,由 easL(也称为 fgaPT1)编码的异戊烯基转移酶的存在与否会产生多样性。此外,EasL 的特异性降低似乎有助于麦角生物碱的多样化。在一种真菌中观察到的麦角生物碱谱也受到中间产物通过该途径的延迟通量的影响,这导致中间产物或早期途径副产物积累到与途径终产物相当的浓度。