Bacteriology Division, United States Army Medical Research Institute of Infectious Diseases, Frederick, MD, USA.
Microbiol Res. 2019 Sep;226:48-54. doi: 10.1016/j.micres.2019.05.007. Epub 2019 May 31.
The Burkholderia pseudomallei complex consists of six phylogenetically related Gram-negative bacterial species that include environmental saprophytes and mammalian pathogens. These microbes possess multiple type VI secretion systems (T6SS) that provide a fitness advantage in diverse niches by translocating effector molecules into prokaryotic and eukaryotic cells in a contact-dependent manner. Several recent studies have elucidated the regulation and function of T6SS-2, a novel contact-independent member of the T6SS family. Expression of the T6SS-2 gene cluster is repressed by OxyR, Zur and TctR and is activated by GvmR and reactive oxygen species (ROS). The last two genes of the T6SS-2 gene cluster encode a zincophore (TseZ) and a manganeseophore (TseM) that are exported into the extracellular milieu in a contact-independent fashion when microbes encounter oxidative stress. TseZ and TseM bind Zn and Mn, respectively, and deliver them to bacteria where they provide protection against the lethal effects of ROS. The TonB-dependent transporters that interact with TseZ and TseM, and actively transport Zn and Mn across the outer membrane, have also been identified. Finally, T6SS-2 provides a contact-independent growth advantage in nutrient limited environments and is critical for virulence in Galleria mellonella larvae, but is dispensable for virulence in rodent models of infection.
伯克霍尔德氏菌复合体由六个在系统发生上相关的革兰氏阴性细菌种组成,包括环境腐生菌和哺乳动物病原体。这些微生物拥有多个类型 VI 分泌系统(T6SS),通过接触依赖性方式将效应分子易位到原核和真核细胞中,从而在多种生境中提供适应性优势。最近的几项研究阐明了 T6SS-2 的调控和功能,T6SS-2 是 T6SS 家族中的一种新型非接触成员。T6SS-2 基因簇的表达受 OxyR、Zur 和 TctR 抑制,受 GvmR 和活性氧(ROS)激活。T6SS-2 基因簇的最后两个基因编码锌载体(TseZ)和锰载体(TseM),当微生物遇到氧化应激时,它们以非接触方式被分泌到细胞外环境中。TseZ 和 TseM 分别结合 Zn 和 Mn,并将它们递送到细菌中,为它们提供对 ROS 致命效应的保护。与 TseZ 和 TseM 相互作用的 TonB 依赖性转运蛋白,以及主动将 Zn 和 Mn 穿过外膜转运的蛋白,也已被鉴定。最后,T6SS-2 在营养有限的环境中提供非接触性生长优势,对 G. mellonella 幼虫的毒力至关重要,但在感染的啮齿动物模型中则不是必需的。