D'Orazio Melania, Mastropasqua Maria Chiara, Cerasi Mauro, Pacello Francesca, Consalvo Ada, Chirullo Barbara, Mortensen Brittany, Skaar Eric P, Ciavardelli Domenico, Pasquali Paolo, Battistoni Andrea
Department of Biology, University of Rome Tor Vergata, 00133 Roma, Italy.
Metallomics. 2015 Jun;7(6):1023-35. doi: 10.1039/c5mt00017c.
The ability of a large number of bacterial pathogens to multiply in the infected host and cause disease is dependent on their ability to express high affinity zinc importers. In many bacteria, ZnuABC, a transporter of the ABC family, plays a central role in the process of zinc uptake in zinc poor environments, including the tissues of the infected host. To initiate an investigation into the relevance of the zinc uptake apparatus for Pseudomonas aeruginosa pathogenicity, we have generated a znuA mutant in the PA14 strain. We have found that this mutant strain displays a limited growth defect in zinc depleted media. The znuA mutant strain is more sensitive than the wild type strain to calprotectin-mediated growth inhibition, but both the strains are highly resistant to this zinc sequestering antimicrobial protein. Moreover, intracellular zinc content is not evidently affected by inactivation of the ZnuABC transporter. These findings suggest that P. aeruginosa is equipped with redundant mechanisms for the acquisition of zinc that might favor P. aeruginosa colonization of environments containing low levels of this metal. Nonetheless, deletion of znuA affects alginate production, reduces the activity of extracellular zinc-containing proteases, including LasA, LasB and protease IV, and decreases the ability of P. aeruginosa to disseminate during systemic infections. These results indicate that efficient zinc acquisition is critical for the expression of various virulence features typical of P. aeruginosa and that ZnuABC also plays an important role in zinc homeostasis in this microorganism.
大量细菌病原体在受感染宿主中繁殖并引发疾病的能力取决于它们表达高亲和力锌转运体的能力。在许多细菌中,ABC家族的转运体ZnuABC在包括受感染宿主组织在内的锌缺乏环境中的锌摄取过程中发挥核心作用。为了研究锌摄取装置与铜绿假单胞菌致病性的相关性,我们在PA14菌株中构建了znuA突变体。我们发现该突变菌株在缺锌培养基中表现出有限的生长缺陷。znuA突变菌株比野生型菌株对钙卫蛋白介导的生长抑制更敏感,但两种菌株对这种锌螯合抗菌蛋白都具有高度抗性。此外,细胞内锌含量并未因ZnuABC转运体的失活而受到明显影响。这些发现表明,铜绿假单胞菌具备冗余的锌获取机制,这可能有利于其在低锌环境中的定殖。尽管如此,znuA的缺失会影响藻酸盐的产生,降低包括LasA、LasB和蛋白酶IV在内的细胞外含锌蛋白酶的活性,并降低铜绿假单胞菌在全身感染期间的传播能力。这些结果表明,高效的锌获取对于铜绿假单胞菌典型的各种毒力特征的表达至关重要,并且ZnuABC在该微生物的锌稳态中也起着重要作用