Green Johnathan C D, Kahramanoglou Christina, Rahman Alamgir, Pender Alexandra M C, Charbonnel Nicolas, Fraser Gillian M
Department of Pathology, University of Cambridge, UK.
J Mol Biol. 2009 Aug 28;391(4):679-90. doi: 10.1016/j.jmb.2009.05.075. Epub 2009 Jun 1.
The specialised signal recognition particle family guanosine 5c-triphosphate (GTP)-binding protein FlhF is required for the correct localisation of flagella in several bacterial species. Here, we characterise the regions of Vibrio cholerae FlhF that are required for its function and targeting to the old cell pole, and we present evidence for a mechanism by which FlhF establishes flagellum polar localisation. Substitution of residues in FlhF nucleotide-binding motifs reduced GTP binding and the efficiency of flagellum biogenesis, and caused flagellum mislocalisation. However, replacement of conserved putative catalytic residues (D(321), R(324), and Q(330)) had no effect, suggesting that while GTP binding influences FlhF function, GTPase activity might not be essential. FlhF associated with the inner membrane in the absence of other flagellar proteins, and a functional FlhF-green fluorescent protein fusion was targeted to the old cell pole where the flagellum is localised. FlhF targeting to the pole was intrinsic, as no other flagellar proteins were needed. Neither the FlhF C-terminal GTP-binding region nor the N-terminal 166-residue B-region was required for polar localisation, though they were essential for FlhF function. Deletion of the central 108-residue N-region of FlhF, comprising alpha-helices N1-N4, did however severely reduce the efficiency of FlhF polar targeting, as well as FlhF function. The intrinsic localisation of FlhF to the old cell pole membrane suggested that FlhF might function at an early stage of flagellum assembly; to test this, we assessed the effect of FlhF on the localisation of the earliest flagellar structural component, the membrane-supramembrane ring protein FliF. Recruitment of FliF to the pole required only FlhF and no other flagellar proteins. FliF polar targeting was abolished in the absence of FlhF and by deletion of the FlhF B-domain or GTP-binding region. Our data indicate that FlhF establishes the site of flagellum assembly at the old cell pole membrane by recruiting the earliest flagellar structural component FliF.
在几种细菌中,鞭毛的正确定位需要特殊的信号识别颗粒家族鸟苷5'-三磷酸(GTP)结合蛋白FlhF。在此,我们对霍乱弧菌FlhF发挥功能并靶向旧细胞极所需的区域进行了表征,并提供了FlhF建立鞭毛极定位机制的证据。FlhF核苷酸结合基序中残基的替换降低了GTP结合和鞭毛生物合成的效率,并导致鞭毛定位错误。然而,替换保守的假定催化残基(D(321)、R(324)和Q(330))没有影响,这表明虽然GTP结合影响FlhF功能,但GTP酶活性可能不是必需的。在没有其他鞭毛蛋白的情况下,FlhF与内膜相关,并且功能性的FlhF-绿色荧光蛋白融合体靶向鞭毛所在的旧细胞极。FlhF靶向细胞极是内在的,因为不需要其他鞭毛蛋白。虽然FlhF的C端GTP结合区域和N端166个残基的B区域对FlhF功能至关重要,但它们对于极定位不是必需的。然而,删除FlhF中央108个残基的N区域(包括α螺旋N1-N4)确实严重降低了FlhF极靶向的效率以及FlhF功能。FlhF在旧细胞极膜上的内在定位表明,FlhF可能在鞭毛组装的早期阶段发挥作用;为了验证这一点,我们评估了FlhF对最早的鞭毛结构成分——膜-超膜环蛋白FliF定位的影响。FliF募集到细胞极仅需要FlhF,不需要其他鞭毛蛋白。在没有FlhF以及删除FlhF B结构域或GTP结合区域的情况下,FliF的极靶向被消除。我们的数据表明,FlhF通过募集最早的鞭毛结构成分FliF在旧细胞极膜上建立鞭毛组装位点。