Institute of Clinical Physiology, UOS CNR, Pisa, Italy.
Department of Life Sciences, Siena, Italy.
J Cell Physiol. 2018 Apr;233(4):2759-2767. doi: 10.1002/jcp.25885. Epub 2017 May 16.
The yeast Pichia fermentans DISAABA 726 strain (P. fermentans) is a dimorphic yeast that under different environmental conditions may switch from a yeast-like to pseudohyphal morphology. We hypothesize that exosomes-like vesicles (EV) could mediate this rapid modification. EV are membrane-derived vesicles carrying lipids, proteins, mRNAs and microRNAs and have been recognized as important mediators of intercellular communication. Although it has been assumed for a long time that fungi release EV, knowledge of their functions is still limited. In this work we analyze P. fermentans EV production during growth in two different media containing urea (YCU) or methionine (YCM) where yeast-like or pseudohyphal morphology are produced. We developed a procedure to extract EV from the neighboring biofilm which is faster and more efficient as compared to the widely used ultracentrifugation method. Differences in morphology and RNA content of EV suggest that they might have an active role during dimorphic transition as response to the growth conditions. Our findings are coherent with a general state of hypoxic stress of the pseudohyphal cells.
产朊假丝酵母 DISAABA 726 菌株(P. fermentans)是一种二相酵母,在不同的环境条件下,它可能从酵母样形态转变为假菌丝形态。我们假设外泌体样小泡(EV)可以介导这种快速的修饰。EV 是一种携带脂质、蛋白质、mRNA 和 microRNA 的膜衍生小泡,已被认为是细胞间通讯的重要介质。尽管人们长期以来一直认为真菌会释放 EV,但对其功能的了解仍然有限。在这项工作中,我们分析了产朊假丝酵母在含有尿素(YCU)或蛋氨酸(YCM)的两种不同培养基中生长时 EV 的产生情况,这两种培养基分别可以产生酵母样或假菌丝形态。我们开发了一种从邻近生物膜中提取 EV 的方法,与广泛使用的超速离心法相比,该方法更快、更高效。EV 的形态和 RNA 含量的差异表明,它们可能在二相转变过程中作为对生长条件的反应发挥积极作用。我们的发现与假菌丝细胞普遍存在缺氧应激状态一致。