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烟曲霉蛋白 O-甘露糖基转移酶家族成员对生长、形态发生和活力有不同影响。

Members of protein O-mannosyltransferase family in Aspergillus fumigatus differentially affect growth, morphogenesis and viability.

机构信息

Unité des Aspergillus, Institut Pasteur, 25 rue du Docteur Roux 75724 Paris Cedex 15, France.

出版信息

Mol Microbiol. 2010 Jun 1;76(5):1205-21. doi: 10.1111/j.1365-2958.2010.07164.x. Epub 2010 Apr 14.

Abstract

O-mannosylation is an essential protein modification in eukaryotes. It is initiated at the endoplasmic reticulum by O-mannosyltransferases (PMT) that are evolutionary conserved from yeast to humans. The PMT family is phylogenetically classified into PMT1, PMT2 and PMT4 subfamilies, which differ in protein substrate specificity and number of genes per subfamily. In this study, we characterized for the first time the whole PMT family of a pathogenic filamentous fungus, Aspergillus fumigatus. Genome analysis showed that only one member of each subfamily is present in A. fumigatus, PMT1, PMT2 and PMT4. Despite the fact that all PMTs are transmembrane proteins with conserved peptide motifs, the phenotype of each PMT deletion mutant was very different in A. fumigatus. If disruption of PMT1 did not reveal any phenotype, deletion of PMT2 was lethal. Disruption of PMT4 resulted in abnormal mycelial growth and highly reduced conidiation associated to significant proteomic changes. The double pmt1pmt4 mutant was lethal. The single pmt4 mutant exhibited an exquisite sensitivity to echinocandins that is associated to major changes in the expression of signal transduction cascade genes. These results indicate that the PMT family members play a major role in growth, morphogenesis and viability of A. fumigatus.

摘要

O-甘露糖基化是真核生物中一种重要的蛋白质修饰。它在内质网由进化上从酵母到人都保守的 O-甘露糖基转移酶(PMT)起始。PMT 家族在系统发育上分为 PMT1、PMT2 和 PMT4 亚家族,它们在蛋白质底物特异性和每个亚家族的基因数量上有所不同。在这项研究中,我们首次对致病丝状真菌烟曲霉的整个 PMT 家族进行了表征。基因组分析表明,A. fumigatus 中每个亚家族仅存在一个成员,即 PMT1、PMT2 和 PMT4。尽管所有 PMTs 都是具有保守肽基序的跨膜蛋白,但每个 PMT 缺失突变体在 A. fumigatus 中的表型差异非常大。如果 PMT1 的缺失没有显示任何表型,则 PMT2 的缺失是致命的。PMT4 的缺失导致菌丝生长异常和产孢能力大大降低,同时伴随着显著的蛋白质组变化。双 pmt1pmt4 突变体是致死的。单 pmt4 突变体对棘白菌素表现出极高的敏感性,这与信号转导级联基因表达的重大变化有关。这些结果表明,PMT 家族成员在 A. fumigatus 的生长、形态发生和活力中发挥着重要作用。

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