Department of Biological Sciences, University of Wisconsin-Milwaukee, P. O. Box 413, Milwaukee, WI, 53201, USA.
Appl Microbiol Biotechnol. 2014 Jan;98(2):763-75. doi: 10.1007/s00253-013-5355-2. Epub 2013 Nov 21.
Cytophaga hutchinsonii glides rapidly over surfaces and employs a novel collection of cell-associated proteins to digest crystalline cellulose. HimarEm1 transposon mutagenesis was used to isolate a mutant with an insertion in CHU_0170 (sprP) that was partially deficient in gliding motility and was unable to digest filter paper cellulose. SprP is similar in sequence to the Porphyromonas gingivalis type IX secretion system (T9SS) protein PorP that is involved in the secretion of gingipain protease virulence factors and to the Flavobacterium johnsoniae T9SS protein SprF that is needed to deliver components of the gliding motility machinery to the cell surface. We developed an efficient method to construct targeted nonpolar mutations in C. hutchinsonii and deleted sprP. The deletion mutant was defective in gliding and failed to digest cellulose, and complementation with sprP on a plasmid restored both abilities. Sequence analysis predicted that CHU_3105 is secreted by the T9SS, and deletion of sprP resulted in decreased levels of extracellular CHU_3105. The results suggest that SprP may function in protein secretion. The T9SS may be required for motility and cellulose utilization because cell surface proteins predicted to be involved in both processes have C-terminal domains that are thought to target them to this secretion system. The efficient genetic tools now available for C. hutchinsonii should allow a detailed analysis of the cellulolytic, gliding motility, and protein secretion machineries of this common but poorly understood bacterium.
纤维弧菌在表面上快速滑行,并利用一系列新型的细胞相关蛋白来消化结晶纤维素。使用 HimarEm1 转座子诱变技术分离出一个突变体,该突变体在 CHU_0170(sprP)中插入,导致其在滑行运动方面部分缺陷,并且无法消化滤纸纤维素。SprP 序列与参与牙龈蛋白酶毒力因子分泌的牙龈卟啉单胞菌 IX 型分泌系统(T9SS)蛋白 PorP 以及需要将滑行运动机制组件递送到细胞表面的黄杆菌 T9SS 蛋白 SprF 相似。我们开发了一种在纤维弧菌中构建靶向非极性突变的有效方法,并删除了 sprP。缺失突变体在滑行和消化纤维素方面都有缺陷,而在质粒上与 sprP 互补则恢复了这两种能力。序列分析预测 CHU_3105 是由 T9SS 分泌的,而 sprP 的缺失导致细胞外 CHU_3105 的水平降低。结果表明,SprP 可能在蛋白质分泌中起作用。T9SS 可能是运动和纤维素利用所必需的,因为涉及这两个过程的细胞表面蛋白具有被认为将它们靶向该分泌系统的 C 端结构域。现在可用于纤维弧菌的高效遗传工具应该允许对这种常见但了解甚少的细菌的纤维素分解、滑行运动和蛋白质分泌机制进行详细分析。