Max-von-Pettenkofer-Institute, Ludwig-Maximilians-University, Munich, Germany.
Mol Microbiol. 2013 Sep;89(5):857-71. doi: 10.1111/mmi.12316. Epub 2013 Jul 21.
Hyphae of filamentous Ascomycota consist of compartments that are connected via septal pores. To avoid a dramatic loss of cellular content after wounding, fungi developed mechanisms to occlude their septal pores. In most Pezizomycotina, so-called Woronin bodies are anchored in proximity to the pore. This is a prominent example for precise spatial positioning of organelles, but so far the underlying molecular organization has remained largely unknown. Using the pathogenic mould Aspergillus fumigatus, we provide evidence that Woronin bodies are important for stress resistance and virulence. Furthermore the molecular machinery anchoring them at the septum is described. Namely, we have identified Lah as the tethering protein and provide evidence that the Woronin body protein HexA binds to the septal pore in a Lah-dependent manner. Moreover, we demonstrate that a striking poly-histidine motif targets HexA to the septal cell wall. Thus, the axis HexA-Lah is an excellent candidate for the tether linking Woronin bodies to the septum. This model applies to A.fumigatus, but most likely also to the vast majority of the Pezizomycotina. Our findings shed light on the evolution of Woronin body anchoring and provide a basis for the development of novel strategies to combat fungal pathogens like A.fumigatus.
丝状子囊菌的菌丝由通过隔膜孔连接的隔室组成。为了避免受伤后细胞内容物的大量流失,真菌开发了封闭隔膜孔的机制。在大多数散囊菌中,所谓的Woronin 体被锚定在接近孔的位置。这是细胞器精确空间定位的一个突出例子,但到目前为止,其潜在的分子组织仍然知之甚少。使用致病霉菌烟曲霉,我们提供了证据表明 Woronin 体对抵抗应激和毒力很重要。此外,还描述了将它们固定在隔膜上的分子机制。具体来说,我们已经确定 Lah 是连接蛋白,并提供证据表明 Woronin 体蛋白 HexA 以 Lah 依赖的方式与隔膜孔结合。此外,我们证明了一个引人注目的组氨酸多模体将 HexA 靶向到隔膜细胞壁。因此,HexA-Lah 轴是将 Woronin 体连接到隔膜的连接蛋白的理想候选物。该模型适用于 A.fumigatus,但很可能也适用于绝大多数散囊菌。我们的发现揭示了 Woronin 体锚定的进化,并为开发针对像 A.fumigatus 这样的真菌病原体的新型策略提供了基础。