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Heterologous expression of pneumococcal virulence factor PspC on the surface of Lactococcus lactis confers adhesive properties

机译:肺炎球菌毒力因子PSPC对乳球菌乳酸乳糖表面的异源表达赋予粘性特性

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Lactococcus lactis is a non-pathogenic bacterium that is used in the food industry but is also used as a heterologous host to reveal protein functions of pathogenic bacteria. The adhesin PspC from Streptococcus pneumoniae is a choline-binding protein that is non-covalently anchored to the bacterial cell wall. To assess the exclusive impact of pneumococcal surface protein C (PspC) on the interplay with its host we generated recombinant L. lactis producing a nisin-inducible and covalently anchored variant of PspC on the lactococcal cell surface. A translational fusion of the 5′-end of pspC3.4 with the 3′-end of hic (pspC11.4) was designed to decorate the surface of L. lactis with a chimeric PspC. The PspC3.4 part comprises the first 281 aa residues of PspC3.4, while the Hic sequence consists of the proline-rich and sortase-anchored domain. The results demonstrated that PspC is sufficient for adhesion and subsequent invasion of host epithelial cells expressing the human polymeric Ig receptor (hpIgR). Moreover, invasion via hpIgR was even more pronounced when the chimeric PspC was produced by lactococci compared with pneumococci. This study shows also for the first time that PspC plays no significant role during phagocytosis by macrophages. In contrast, recruitment of Factor H via the PspC chimer has a dramatic effect on phagocytosis of recombinant but not wild-type lactococci, as Factor H interacts specifically with the amino-terminal part of PspC and mediates the contact with phagocytes. Furthermore, L. lactis expressing PspC increased intracellular calcium levels in pIgR-expressing epithelial cells, thus resembling the effect of pneumococci, which induced release of Ca2+ from intracellular stores via the PspC–pIgR mechanism. In conclusion, expression of the chimeric PspC confers adhesive properties to L. lactis and indicates the potential of L. lactis as a suitable host to study the impact of individual bacterial factors on their capacity to interfere with the host and manipulate eukaryotic epithelial cells.
机译:乳乳球菌乳酸是一种在食品工业中使用的非致病细菌,但也用作异源宿主,以揭示病原细菌的蛋白质功能。来自链球菌肺炎链球菌的粘合剂PSPC是一种胆碱结合蛋白,其是非共价锚定的细菌细胞壁。为了评估肺炎球菌表面蛋白C(PSPC)对其宿主的相互作用的专用影响,我们在乳酰胺细胞表面上产生重组L.乳酸的重组L.乳酸乳酸乳酸乳杆菌的PSPC的Nisin诱导和共价锚定的变体。 PSPC3.4的5'-末端与HIC(PSPC11.4)的平移融合设计为用嵌合PSPC装饰L.乳酸的表面。 PSPC3.4部分包含PSPC3.4的第一个281 AA残基,而HIC序列由富含脯氨酸和分选酶锚定结构域组成。结果表明,PSPC足以粘附和随后侵袭表达人聚合物IG受体(HPIGR)的宿主上皮细胞。此外,当与乳酸乳杆菌产生嵌合的PSPC时,通过Hpigr的侵袭甚至更明显。本研究表明,PSPC首次在巨噬细胞中首次发挥吞噬作用在吞噬作用中没有显着作用。相比之下,通过PSPC嵌合器募集因子H对重组但不是野生型乳酸碱的吞噬作用具有显着影响,因为因子H与PSPC的氨基末端部分特别相互作用,并介导与吞噬细胞接触。此外,表达PSPC的L.乳酸在PIGR表达上皮细胞中增加了细胞内钙水平,从而类似于PNEumococci的作用,其通过PSPC-PIGR机制从细胞内储存诱导CA2 +的释放。总之,嵌合PSPC的表达赋予L. Lactias的粘合性能,并表明L. Lactis作为合适宿主的潜力,以研究个体细菌因素对其干扰宿主并操纵真核上皮细胞的能力的影响。

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