Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Mexico City, Mexico.
J Bacteriol. 2012 Nov;194(22):6174-83. doi: 10.1128/JB.00850-12. Epub 2012 Sep 7.
Here we describe a novel component essential for flagellar rotation in Rhodobacter sphaeroides. This protein is encoded by motF (RSP_0067), the first gene of a predicted transcriptional unit which contains two hypothetical genes. Sequence analysis indicated that MotF is a bitopic membrane-spanning protein. Protease sensitivity assays and green fluorescent protein (GFP) fusions confirmed this prediction and allowed us to conclude that the C terminus of MotF is located in the periplasmic space. Wild-type cells expressing a functional GFP-MotF fusion show a single fluorescent focus per cell. The localization of this protein in different genetic backgrounds allowed us to determine that normal localization of MotF depends on the presence of FliL and MotB. Characterization of a ΔmotF pseudorevertant strain revealed that a single nucleotide change in motB suppresses the Mot(-) phenotype of the motF mutant. Additionally, we show that MotF also becomes dispensable when other mutant alleles of motB previously isolated as second-site suppressors of ΔfliL were expressed in the motF mutant strain. These results show that MotF is a new component of the Fla1 flagellum, which together with FliL is required to promote flagellar rotation, possibly through MotB.
在这里,我们描述了一个在球形红杆菌中对鞭毛旋转至关重要的新型组件。该蛋白由 motF(RSP_0067)编码,它是一个预测转录单元的第一个基因,该单元包含两个假定基因。序列分析表明,MotF 是一种具有两个跨膜结构域的膜蛋白。蛋白酶敏感性测定和绿色荧光蛋白(GFP)融合实验证实了这一预测,并使我们能够得出结论,MotF 的 C 端位于周质空间。表达有功能 GFP-MotF 融合蛋白的野生型细胞在每个细胞中显示一个单一的荧光焦点。该蛋白在不同遗传背景下的定位使我们能够确定 MotF 的正常定位取决于 FliL 和 MotB 的存在。对一个ΔmotF 假回复突变株的表征表明,在 motF 突变体中,motB 中的一个单核苷酸变化可以抑制 Mot(-)表型。此外,我们还表明,当先前作为Δ fliL 的第二位点抑制子分离的 motB 的其他突变等位基因在 motF 突变株中表达时,MotF 也变得可有可无。这些结果表明,MotF 是 Fla1 鞭毛的一个新组件,它与 FliL 一起,可能通过 MotB 来促进鞭毛旋转。