首页> 外文期刊>Molecular Microbiology >TUP1 disruption in Cryptococcus neoformans uncovers a peptide-mediated density-dependent growth phenomenon that mimics quorum sensing.
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TUP1 disruption in Cryptococcus neoformans uncovers a peptide-mediated density-dependent growth phenomenon that mimics quorum sensing.

机译:新型隐球菌中的TUP1破坏揭示了一种肽介导的密度依赖性生长现象,该现象模仿了群体感应。

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摘要

Cryptococcus neoformans is a pathogenic yeast that causes life-threatening meningoencephalitis and grows well on mycological media regardless of inoculum size. Interestingly, a deletion of the global repressor TUP1 in C. neoformans uncovered a density-dependent growth phenotype reminiscent of the quorum-sensing phenomenon. An inoculum size of lower than 10(3) cells of the tup1Delta strain failed to form colonies on agar media while inocula of 10(5)-10(6) cells per plate formed a lawn. This phenotype, expressed as the inability to grow at low cell densities, was rescued by the culture filtrate from a high cell density tup1Delta culture and the active molecule in this culture filtrate was identified to be an oligopeptide composed of 11 amino acids. Activity assays, using a synthetic version of the peptide with strains harbouring a deletion of the corresponding gene, proved that the oligopeptide functioned as an autoregulatory molecule responsible for the density-dependent phenotype. Although a density-dependent growth phenotype has been reported in several species of Ascomycetes, no peptide has been reported to function as an autoregulator in the Kingdom Fungi. The identification of an 11-mer peptide as an autoregulatory molecule in C. neoformans suggests that a diverse mechanism of cell-to-cell communication exists in the Kingdom Fungi.
机译:新型隐球菌是一种致病性酵母,可导致威胁生命的脑膜脑炎,无论接种量大小,其在真菌学培养基上均可正常生长。有趣的是,在新孢梭菌中全局阻遏物TUP1的缺失揭示了密度相关的生长表型,让人联想到群体感应现象。小于10(3)个tup1Delta菌株细胞的接种物无法在琼脂培养基上形成菌落,而每板10(5)-10(6)个细胞的接种物形成了草坪。该表型表示为无法在低细胞密度下生长,是通过高细胞密度tup1Delta培养物的培养滤液来挽救的,该培养滤液中的活性分子被鉴定为由11个氨基酸组成的寡肽。使用带有保留相应基因缺失的菌株的肽的合成形式的活性测定法证明,寡肽起负责浓度依赖性表型的自调节分子的作用。尽管在几种子囊菌中已经报道了依赖密度的生长表型,但是在金刚菌中没有肽能作为自调节子。在新孢梭菌中将11-mer肽鉴定为自调节分子表明,Kingdom Fungi中存在多种细胞间通讯机制。

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