Balasingham Seetha V, Collins Richard F, Assalkhou Reza, Homberset Håvard, Frye Stephan A, Derrick Jeremy P, Tønjum Tone
Centre for Molecular Biology and Neuroscience, Institute of Microbiology, University of Oslo, Oslo, Norway.
J Bacteriol. 2007 Aug;189(15):5716-27. doi: 10.1128/JB.00060-07. Epub 2007 May 25.
Neisseria meningitidis can be the causative agent of meningitis or septicemia. This bacterium expresses type IV pili, which mediate a variety of functions, including autoagglutination, twitching motility, biofilm formation, adherence, and DNA uptake during transformation. The secretin PilQ supports type IV pilus extrusion and retraction, but it also requires auxiliary proteins for its assembly and localization in the outer membrane. Here we have studied the physical properties of the lipoprotein PilP and examined its interaction with PilQ. We found that PilP was an inner membrane protein required for pilus expression and transformation, since pilP mutants were nonpiliated and noncompetent. These mutant phenotypes were restored by the expression of PilP in trans. The pilP gene is located upstream of pilQ, and analysis of their transcripts indicated that pilP and pilQ were cotranscribed. Furthermore, analysis of the level of PilQ expression in pilP mutants revealed greatly reduced amounts of PilQ only in the deletion mutant, exhibiting a polar effect on pilQ transcription. In vitro experiments using recombinant fragments of PilP and PilQ showed that the N-terminal region of PilP interacted with the middle part of the PilQ polypeptide. A three-dimensional reconstruction of the PilQ-PilP interacting complex was obtained at low resolution by transmission electron microscopy, and PilP was shown to localize around the cap region of the PilQ oligomer. These findings suggest a role for PilP in pilus biogenesis. Although PilQ does not need PilP for its stabilization or membrane localization, the specific interaction between these two proteins suggests that they might have another coordinated activity in pilus extrusion/retraction or related functions.
脑膜炎奈瑟菌可成为脑膜炎或败血症的病原体。这种细菌表达IV型菌毛,介导多种功能,包括自凝集、颤动运动、生物膜形成、黏附以及转化过程中的DNA摄取。分泌素PilQ支持IV型菌毛的伸出和缩回,但它在组装和定位到外膜时也需要辅助蛋白。在这里,我们研究了脂蛋白PilP的物理特性,并检测了它与PilQ的相互作用。我们发现PilP是菌毛表达和转化所需的内膜蛋白,因为pilP突变体没有菌毛且无转化能力。通过反式表达PilP可恢复这些突变表型。pilP基因位于pilQ的上游,对它们转录本的分析表明pilP和pilQ是共转录的。此外,对pilP突变体中PilQ表达水平的分析显示,仅在缺失突变体中PilQ的量大幅减少,对pilQ转录表现出极性效应。使用PilP和PilQ的重组片段进行的体外实验表明,PilP的N端区域与PilQ多肽的中部相互作用。通过透射电子显微镜在低分辨率下获得了PilQ - PilP相互作用复合物的三维重建,结果显示PilP定位于PilQ寡聚体的帽状区域周围。这些发现表明PilP在菌毛生物合成中发挥作用。虽然PilQ的稳定或膜定位不需要PilP,但这两种蛋白质之间的特异性相互作用表明它们可能在菌毛伸出/缩回或相关功能中具有另一种协同活性。