Department of Biochemistry, University of Toronto, Toronto, Ontario, Canada.
Department of Molecular Genetics, University of Toronto, Toronto, Ontario, Canada.
Nat Commun. 2023 Mar 16;14(1):1469. doi: 10.1038/s41467-023-37087-7.
Diverse bacterial species produce extracellular contractile injection systems (eCISs). Although closely related to contractile phage tails, eCISs can inject toxic proteins into eukaryotic cells. Thus, these systems are commonly viewed as cytotoxic defense mechanisms that are not central to other aspects of bacterial biology. Here, we provide evidence that eCISs appear to participate in the complex developmental process of the bacterium Streptomyces coelicolor. In particular, we show that S. coelicolor produces eCIS particles during its normal growth cycle, and that strains lacking functional eCIS particles exhibit pronounced alterations in their developmental program. Furthermore, eCIS-deficient mutants display reduced levels of cell death and altered morphology during growth in liquid media. Our results suggest that the main role of eCISs in S. coelicolor is to modulate the developmental switch that leads to aerial hyphae formation and sporulation, rather than to attack other species.
不同的细菌物种产生细胞外可收缩注射系统(eCISs)。尽管与收缩性噬菌体尾非常相似,但 eCISs 可以将毒性蛋白注入真核细胞。因此,这些系统通常被视为非关键的细胞毒性防御机制,而不是细菌生物学其他方面的核心。在这里,我们提供的证据表明,eCISs 似乎参与了细菌链霉菌的复杂发育过程。具体来说,我们表明,链霉菌在其正常生长周期中产生 eCIS 颗粒,而缺乏功能 eCIS 颗粒的菌株在其发育程序中表现出明显的改变。此外,eCIS 缺陷突变体在液体培养基中生长时表现出较低的细胞死亡率和改变的形态。我们的结果表明,eCISs 在链霉菌中的主要作用是调节导致气生菌丝形成和孢子形成的发育开关,而不是攻击其他物种。