Rawling E G, Brinkman F S, Hancock R E
Department of Microbiology and Immunology, University of British Columbia, Vancouver, British Columbia, Canada V6T 1W5.
J Bacteriol. 1998 Jul;180(14):3556-62. doi: 10.1128/JB.180.14.3556-3562.1998.
OprF, the major outer membrane protein of Pseudomonas aeruginosa, is multifunctional in that it can act as a nonspecific porin, plays a role in the maintenance of cell shape, and is required for growth in a low-osmolarity environment. The latter two structural roles of OprF, and OprF's association with the peptidoglycan, have been proposed to be localized in the carboxy terminus of the protein, based on this region's similarity to members of the OmpA family of proteins. To determine if this is correct, we constructed a series of C-terminally truncated OprF derivatives and examined their effects on P. aeruginosa cell length and growth in low-osmolarity medium. While the C terminus of OprF was required for wild-type cell length and growth in low-osmolarity medium, expression of the N terminus (first 163 amino acids [aa]) also influenced these phenotypes (compared with OprF deficiency). The first 154 to 164 aa of OprF seemed required for stable protein expression, consistent with the existence of a beta-barrel domain in the N terminus of OprF. Greater than 215 aa of the protein were required for strong peptidoglycan association, confirming that residues in the C-terminal end of OprF are required for peptidoglycan binding. OprF deficiency did not affect the in vivo growth of an OprF-deficient strain in a mouse chamber model. Collectively, these data suggest that the C terminus of OprF plays a role in cell length, growth of P. aeruginosa in low-osmolarity media (but not in vivo), and peptidoglycan association, while the N terminus has an influence on the first two characteristics and is additionally important for stable protein expression.
铜绿假单胞菌的主要外膜蛋白OprF具有多种功能,它可以作为非特异性孔蛋白,在维持细胞形态中发挥作用,并且是在低渗环境中生长所必需的。基于OprF的后两个结构作用以及它与肽聚糖的关联,有人提出其定位在该蛋白的羧基末端,这是基于该区域与OmpA蛋白家族成员的相似性得出的结论。为了确定这是否正确,我们构建了一系列C末端截短的OprF衍生物,并研究了它们对铜绿假单胞菌细胞长度以及在低渗培养基中生长的影响。虽然OprF的C末端是野生型细胞长度和在低渗培养基中生长所必需的,但N末端(前163个氨基酸[aa])的表达也影响这些表型(与OprF缺陷相比)。OprF的前154至164个氨基酸似乎是稳定蛋白表达所必需的,这与OprF的N末端存在β-桶结构域一致。该蛋白大于215个氨基酸对于与肽聚糖的强关联是必需的,证实了OprF C末端的残基是肽聚糖结合所必需的。OprF缺陷并不影响OprF缺陷菌株在小鼠腔室模型中的体内生长。总体而言,这些数据表明,OprF的C末端在细胞长度、铜绿假单胞菌在低渗培养基中的生长(但不在体内)以及肽聚糖关联中发挥作用,而N末端对前两个特征有影响,并且对稳定蛋白表达也很重要。