Voulhoux R, Taupiac M P, Czjzek M, Beaumelle B, Filloux A
Laboratoire d'Ingéniérie des Systèmes Macromoléculaires, UPR9027, France.
J Bacteriol. 2000 Jul;182(14):4051-8. doi: 10.1128/JB.182.14.4051-4058.2000.
Pseudomonas aeruginosa is a gram-negative bacterium that secretes many proteins into the extracellular medium via the Xcp machinery. This pathway, conserved in gram-negative bacteria, is called the type II pathway. The exoproteins contain information in their amino acid sequence to allow targeting to their secretion machinery. This information may be present within a conformational motif. The nature of this signal has been examined for P. aeruginosa exotoxin A (PE). Previous studies failed to identify a common minimal motif required for Xcp-dependent recognition and secretion of PE. One study identified a motif at the N terminus of the protein, whereas another one found additional information at the C terminus. In this study, we assess the role of the central PE domain II composed of six alpha-helices (A to F). The secretion behavior of PE derivatives, individually deleted for each helix, was analyzed. Helix E deletion has a drastic effect on secretion of PE, which accumulates within the periplasm. The conformational rearrangement induced in this variant is predicted from the three-dimensional PE structure, and the molecular modification is confirmed by gel filtration experiments. Helix E is in the core of the molecule and creates close contact with other domains (I and III). Deletion of the surface-exposed helix F has no effect on secretion, indicating that no secretion information is contained in this helix. Finally, we concluded that disruption of a structured domain II yields an extended form of the molecule and prevents formation of the conformational secretion motif.
铜绿假单胞菌是一种革兰氏阴性细菌,它通过Xcp机制将许多蛋白质分泌到细胞外培养基中。这种在革兰氏阴性细菌中保守的途径被称为II型途径。外分泌蛋白在其氨基酸序列中包含用于靶向其分泌机制的信息。该信息可能存在于构象基序中。已经对铜绿假单胞菌外毒素A(PE)的这种信号的性质进行了研究。先前的研究未能确定Xcp依赖性识别和分泌PE所需的共同最小基序。一项研究在该蛋白的N端鉴定出一个基序,而另一项研究在C端发现了额外的信息。在本研究中,我们评估了由六个α螺旋(A至F)组成的中央PE结构域II的作用。分析了分别缺失每个螺旋的PE衍生物的分泌行为。螺旋E的缺失对PE的分泌有显著影响,PE在周质中积累。根据三维PE结构预测该变体中诱导的构象重排,并通过凝胶过滤实验证实分子修饰。螺旋E位于分子核心,与其他结构域(I和III)紧密接触。表面暴露的螺旋F的缺失对分泌没有影响,表明该螺旋中不包含分泌信息。最后,我们得出结论,结构化结构域II的破坏产生了分子的延伸形式,并阻止了构象分泌基序的形成。