Université Paris-Sud, Institut de Biochimie et Biophysique Moléculaire et Cellulaire, UMR 8619, F-91405 Orsay, France.
J Biol Chem. 2012 Oct 26;287(44):37395-405. doi: 10.1074/jbc.M112.406439. Epub 2012 Sep 12.
Colicin M (ColM) is the only enzymatic colicin reported to date that inhibits cell wall peptidoglycan biosynthesis. It catalyzes the specific degradation of the lipid intermediates involved in this pathway, thereby provoking lysis of susceptible Escherichia coli cells. A gene encoding a homologue of ColM was detected within the exoU-containing genomic island A carried by certain pathogenic Pseudomonas aeruginosa strains. This bacteriocin (pyocin) that we have named PaeM was crystallized, and its structure with and without an Mg(2+) ion bound was solved. In parallel, site-directed mutagenesis of conserved PaeM residues from the C-terminal domain was performed, confirming their essentiality for the protein activity both in vitro (lipid II-degrading activity) and in vivo (cytotoxicity against a susceptible P. aeruginosa strain). Although PaeM is structurally similar to ColM, the conformation of their active sites differs radically; in PaeM, residues essential for enzymatic activity and cytotoxicity converge toward a same pocket, whereas in ColM they are spread along a particularly elongated active site. We have also isolated a minimal domain corresponding to the C-terminal half of the PaeM protein and exhibiting a 70-fold higher enzymatic activity as compared with the full-length protein. This isolated domain of the PaeM bacteriocin was further shown to kill E. coli cells when addressed to the periplasm of these bacteria.
绿脓菌素 M(ColM)是目前报道的唯一一种能够抑制细胞壁肽聚糖生物合成的酶性大肠菌素。它能够特异性地催化该途径中涉及的脂质中间产物的降解,从而导致易感性大肠杆菌细胞的溶解。在某些致病性铜绿假单胞菌菌株携带的 exoU 基因组岛 A 中检测到编码 ColM 同源物的基因。我们将这种细菌素(噬菌体)命名为 PaeM,并对其进行了结晶,解析了其结合和不结合 Mg2+离子的结构。同时,对来自 C 末端结构域的保守 PaeM 残基进行了定点突变,证实了它们在体外(脂 II 降解活性)和体内(对易感性铜绿假单胞菌菌株的细胞毒性)都对蛋白质活性至关重要。尽管 PaeM 在结构上与 ColM 相似,但它们的活性位点构象却截然不同;在 PaeM 中,对于酶活性和细胞毒性至关重要的残基汇聚到同一个口袋中,而在 ColM 中,它们则沿着特别细长的活性位点分布。我们还分离到了与 PaeM 蛋白 C 末端一半相对应的最小结构域,其酶活性比全长蛋白高 70 倍。当将这种 PaeM 细菌素的分离结构域导入这些细菌的周质时,进一步证明其能够杀死大肠杆菌细胞。