Moebius Nadine, Üzüm Zerrin, Dijksterhuis Jan, Lackner Gerald, Hertweck Christian
Department of Biomolecular Chemistry, Leibniz Institute for Natural Product Research and Infection Biology, Jena, Germany.
CBS-KNAW Fungal Biodiversity Centre, Utrecht, Netherlands.
Elife. 2014 Sep 2;3:e03007. doi: 10.7554/eLife.03007.
The rice seedling blight fungus Rhizopus microsporus and its endosymbiont Burkholderia rhizoxinica form an unusual, highly specific alliance to produce the highly potent antimitotic phytotoxin rhizoxin. Yet, it has remained a riddle how bacteria invade the fungal cells. Genome mining for potential symbiosis factors and functional analyses revealed that a type 2 secretion system (T2SS) of the bacterial endosymbiont is required for the formation of the endosymbiosis. Comparative proteome analyses show that the T2SS releases chitinolytic enzymes (chitinase, chitosanase) and chitin-binding proteins. The genes responsible for chitinolytic proteins and T2SS components are highly expressed during infection. Through targeted gene knock-outs, sporulation assays and microscopic investigations we found that chitinase is essential for bacteria to enter hyphae. Unprecedented snapshots of the traceless bacterial intrusion were obtained using cryo-electron microscopy. Beyond unveiling the pivotal role of chitinolytic enzymes in the active invasion of a fungus by bacteria, these findings grant unprecedented insight into the fungal cell wall penetration and symbiosis formation.
水稻苗枯病菌微小根霉及其内共生菌根瘤伯克霍尔德氏菌形成了一种不同寻常的、高度特异性的共生关系,以产生高效的抗有丝分裂植物毒素根霉素。然而,细菌如何侵入真菌细胞仍是一个谜。对潜在共生因子的基因组挖掘和功能分析表明,细菌内共生体的2型分泌系统(T2SS)是内共生形成所必需的。比较蛋白质组分析表明,T2SS释放几丁质分解酶(几丁质酶、壳聚糖酶)和几丁质结合蛋白。负责几丁质分解蛋白和T2SS成分的基因在感染过程中高度表达。通过靶向基因敲除、孢子形成试验和显微镜观察,我们发现几丁质酶对于细菌进入菌丝至关重要。使用冷冻电子显微镜获得了无痕细菌入侵的前所未有的快照。这些发现不仅揭示了几丁质分解酶在细菌主动侵入真菌中的关键作用,还为真菌细胞壁穿透和共生形成提供了前所未有的见解。