Seliger S S, Mey A R, Valle A M, Payne S M
Section of Molecular Genetics and Microbiology, The University of Texas at Austin, Austin, TX 78712-1095, USA.
Mol Microbiol. 2001 Feb;39(3):801-12. doi: 10.1046/j.1365-2958.2001.02273.x.
The two TonB systems in Vibrio cholerae were found to have unique as well as common functions. Both systems can mediate transport of haemin and the siderophores vibriobactin and ferrichrome. However, TonB1 specifically mediates utilization of the siderophore schizokinen, whereas TonB2 is required for utilization of enterobactin by V. cholerae. Although either TonB system was sufficient for the use of haemin as an iron source, in vitro competition between TonB1 and TonB2 system mutants indicates a preferential role for TonB1 in haemin utilization. This was most pronounced in conditions of high osmolarity, in which TonB1 system mutants were unable to grow with haemin as the sole iron source. Sequence analysis predicted that the two TonB proteins differ in both amino acid sequence and protein size. An internal deletion in TonB1 was constructed in order to generate a protein of approximately the same size as TonB2. A strain expressing the TonB1 deletion protein, and no other TonB, used haemin as the iron source in low-osmolarity medium, but could not use haemin in high osmolarity. This is the same phenotype as a strain expressing only TonB2 and suggests that TonB1, but not TonB2, can span the increased periplasmic space in high osmolarity and thus mediate haemin transport. Mouse colonization assays indicated a role for both TonB systems, and mutations in either system resulted in reduced ability to compete with the wild type in vivo.
霍乱弧菌中的两个托蛋白(TonB)系统被发现具有独特功能和共同功能。两个系统都能介导血红素以及铁载体弧菌素和高铁色素的转运。然而,托蛋白1(TonB1)专门介导铁载体裂褶菌素的利用,而托蛋白2(TonB2)是霍乱弧菌利用肠杆菌素所必需的。尽管任一托蛋白系统都足以将血红素用作铁源,但TonB1和TonB2系统突变体之间的体外竞争表明,TonB1在血红素利用中起优先作用。这在高渗透压条件下最为明显,在这种条件下,TonB1系统突变体无法以血红素作为唯一铁源生长。序列分析预测,两种托蛋白在氨基酸序列和蛋白质大小上均有所不同。构建了TonB1的内部缺失,以产生与TonB2大小大致相同的蛋白质。表达TonB1缺失蛋白且不表达其他托蛋白的菌株,在低渗透压培养基中以血红素作为铁源,但在高渗透压下不能利用血红素。这与仅表达TonB2的菌株具有相同的表型,表明TonB1而非TonB2能够跨越高渗透压下增加的周质空间,从而介导血红素转运。小鼠定殖试验表明两个托蛋白系统均发挥作用,任一系统中的突变都会导致在体内与野生型竞争的能力下降。