Bhetariya Preetida J, Madan Taruna, Basir Seemi Farhat, Varma Anupam, Usha Sarma P
Indian J Clin Biochem. 2011 Apr;26(2):104-19. doi: 10.1007/s12291-011-0131-5. Epub 2011 May 19.
The medical, agricultural and biotechnological importance of the primitive eukaryotic microorganisms, the Fungi was recognized way back in 1920. Among various groups of fungi, the Aspergillus species are studied in great detail using advances in genomics and proteomics to unravel biological and molecular mechanisms in these fungi. Aspergillus fumigatus, Aspergillus flavus, Aspergillus niger, Aspergillus parasiticus, Aspergillus nidulans and Aspergillus terreus are some of the important species relevant to human, agricultural and biotechnological applications. The potential of Aspergillus species to produce highly diversified complex biomolecules such as multifunctional proteins (allergens, antigens, enzymes) and polyketides is fascinating and demands greater insight into the understanding of these fungal species for application to human health. Recently a regulator gene for secondary metabolites, LaeA has been identified. Gene mining based on LaeA has facilitated new metabolites with antimicrobial activity such as emericellamides and antitumor activity such as terrequinone A from A. nidulans. Immunoproteomic approach was reported for identification of few novel allergens for A. fumigatus. In this context, the review is focused on recent developments in allergens, antigens, structural and functional diversity of the polyketide synthases that produce polyketides of pharmaceutical and biological importance. Possible antifungal drug targets for development of effective antifungal drugs and new strategies for development of molecular diagnostics are considered.
早在1920年,人们就认识到原始真核微生物真菌在医学、农业和生物技术方面的重要性。在各类真菌中,利用基因组学和蛋白质组学的进展对曲霉属真菌进行了详细研究,以揭示这些真菌中的生物学和分子机制。烟曲霉、黄曲霉、黑曲霉、寄生曲霉、构巢曲霉和土曲霉是与人类、农业和生物技术应用相关的一些重要菌种。曲霉属真菌产生高度多样化复杂生物分子(如多功能蛋白质(过敏原、抗原、酶)和聚酮化合物)的潜力令人着迷,需要更深入地了解这些真菌物种以便应用于人类健康。最近,已鉴定出一种次生代谢产物的调控基因LaeA。基于LaeA的基因挖掘已促进了具有抗菌活性的新代谢产物(如埃默拉霉素)和具有抗肿瘤活性的新代谢产物(如来自构巢曲霉的terrequinone A)的发现。已报道采用免疫蛋白质组学方法鉴定烟曲霉的几种新型过敏原。在此背景下,本综述聚焦于过敏原、抗原、产生具有药物和生物学重要性的聚酮化合物的聚酮合酶的结构和功能多样性方面的最新进展。还考虑了开发有效抗真菌药物可能的抗真菌药物靶点以及分子诊断开发的新策略。