Petrus Marloes L C, Vijgenboom Erik, Chaplin Amanda K, Worrall Jonathan A R, van Wezel Gilles P, Claessen Dennis
Molecular Biotechnology, Institute of Biology, Leiden University, Sylviusweg 72, 2333 BE Leiden, The Netherlands.
School of Biological Science, University of Essex, Wivenhoe Park, Colchester CO4 3SQ, UK.
Open Biol. 2016 Jan;6(1):150149. doi: 10.1098/rsob.150149.
The filamentous bacterium Streptomyces lividans depends on the radical copper oxidase GlxA for the formation of reproductive aerial structures and, in liquid environments, for the formation of pellets. Incorporation of copper into the active site is essential for the formation of a cross-linked tyrosyl-cysteine cofactor, which is needed for enzymatic activity. In this study, we show a crucial link between GlxA maturation and a group of copper-related proteins including the chaperone Sco and a novel DyP-type peroxidase hereinafter called DtpA. Under copper-limiting conditions, the sco and dtpA deletion mutants are blocked in aerial growth and pellet formation, similarly to a glxA mutant. Western blot analysis showed that GlxA maturation is perturbed in the sco and dtpA mutants, but both maturation and morphology can by rescued by increasing the bioavailability of copper. DtpA acts as a peroxidase in the presence of GlxA and is a substrate for the twin-arginine translocation (Tat) translocation pathway. In agreement, the maturation status of GlxA is also perturbed in tat mutants, which can be compensated for by the addition of copper, thereby partially restoring their morphological defects. Our data support a model wherein a copper-trafficking pathway and Tat-dependent secretion of DtpA link to the GlxA-dependent morphogenesis pathway.
产紫青链霉菌这种丝状细菌形成生殖性气生结构以及在液体环境中形成菌球都依赖于自由基铜氧化酶GlxA。铜掺入活性位点对于形成交联的酪氨酰 - 半胱氨酸辅因子至关重要,而该辅因子是酶活性所必需的。在本研究中,我们揭示了GlxA成熟与一组铜相关蛋白之间的关键联系,这些蛋白包括伴侣蛋白Sco和一种新型的DyP型过氧化物酶(以下称为DtpA)。在铜限制条件下,sco和dtpA缺失突变体在气生生长和菌球形成方面受阻,类似于glxA突变体。蛋白质免疫印迹分析表明,sco和dtpA突变体中GlxA的成熟受到干扰,但通过提高铜的生物可利用性,成熟和形态都可以得到挽救。DtpA在有GlxA存在时作为过氧化物酶起作用,并且是双精氨酸转运(Tat)转运途径的底物。与此一致,tat突变体中GlxA的成熟状态也受到干扰,通过添加铜可以对此进行补偿,从而部分恢复其形态缺陷。我们的数据支持一种模型,其中铜转运途径和DtpA的Tat依赖性分泌与GlxA依赖性形态发生途径相关联。