首页> 美国卫生研究院文献>Frontiers in Microbiology >Targeting of insect epicuticular lipids by the entomopathogenic fungus Beauveria bassiana: hydrocarbon oxidation within the context of a host-pathogen interaction
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Targeting of insect epicuticular lipids by the entomopathogenic fungus Beauveria bassiana: hydrocarbon oxidation within the context of a host-pathogen interaction

机译:昆虫病原真菌球孢白僵菌对昆虫表皮脂质的靶向:宿主-病原体相互作用背景下的烃氧化

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摘要

Broad host range entomopathogenic fungi such as Beauveria bassiana attack insect hosts via attachment to cuticular substrata and the production of enzymes for the degradation and penetration of insect cuticle. The outermost epicuticular layer consists of a complex mixture of non-polar lipids including hydrocarbons, fatty acids, and wax esters. Long chain hydrocarbons are major components of the outer waxy layer of diverse insect species, where they serve to protect against desiccation and microbial parasites, and as recognition molecules or as a platform for semiochemicals. Insect pathogenic fungi have evolved mechanisms for overcoming this barrier, likely with sets of lipid degrading enzymes with overlapping substrate specificities. Alkanes and fatty acids are substrates for a specific subset of fungal cytochrome P450 monooxygenases involved in insect hydrocarbon degradation. These enzymes activate alkanes by terminal oxidation to alcohols, which are further oxidized by alcohol and aldehyde dehydrogenases, whose products can enter β-oxidation pathways. B. bassiana contains at least 83 genes coding for cytochrome P450s (CYP), a subset of which are involved in hydrocarbon oxidation, and several of which represent new CYP subfamilies/families. Expression data indicated differential induction by alkanes and insect lipids and four CYP proteins have been partially characterized after heterologous expression in yeast. Gene knockouts revealed a phenotype for only one (cyp52X1) out of six genes examined to date. CYP52X1 oxidizes long chain fatty acids and participates in the degradation of specific epicuticular lipid components needed for breaching the insect waxy layer. Examining the hydrocarbon oxidizing CYP repertoire of pathogens involved in insect epicuticle degradation can lead to the characterization of enzymes with novel substrate specificities. Pathogen targeting may also represent an important co-evolutionary process regarding insect cuticular hydrocarbon synthesis.
机译:广泛的寄主范围昆虫致病真菌,例如球孢白僵菌,通过附着在表皮基质上并产生酶来降解和渗透昆虫表皮,从而攻击昆虫寄主。最外表皮层由非极性脂质的复杂混合物组成,包括烃,脂肪酸和蜡酯。长链碳氢化合物是各种昆虫物种的蜡质外层的主要成分,在其中它们起到防止干燥和微生物寄生虫的作用,并作为识别分子或用作化学信息素的平台。昆虫致病性真菌已经开发出克服这一障碍的机制,可能是通过具有重叠底物特异性的多种脂质降解酶来实现的。烷烃和脂肪酸是涉及昆虫碳氢化合物降解的真菌细胞色素P450单加氧酶的特定子集的底物。这些酶通过最终氧化为醇来活化烷烃,然后被醇和醛脱氢酶进一步氧化,其产物可以进入β-氧化途径。球孢杆菌含有至少83个编码细胞色素P450(CYP)的基因,其中一个子集与烃氧化有关,其中几个代表新的CYP子家族/家族。表达数据表明,在酵母中异源表达后,烷烃和昆虫脂质的差异诱导作用和四种CYP蛋白已得到部分表征。基因敲除揭示了迄今为止检查的六个基因中只有一个(cyp52X1)的表型。 CYP52X1氧化长链脂肪酸,并参与破坏昆虫蜡质层所需的特定表皮脂质成分的降解。检查与昆虫表皮降解有关的病原体的碳氢化合物氧化CYP库可以导致具有新型底物特异性的酶的表征。病原体靶向还可能代表有关昆虫表皮碳氢化合物合成的重要共同进化过程。

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