Bramanti T E, Holt S C
Department of Periodontics, University of Texas Health Science Center at San Antonio 78284-7894.
J Bacteriol. 1993 Nov;175(22):7413-20. doi: 10.1128/jb.175.22.7413-7420.1993.
A 26-kDa outer membrane protein (Omp26) has been proposed to play a role in hemin acquisition by Porphyromonas gingivalis (T. E. Bramanti and S. C. Holt, J. Bacteriol. 174:5827-5839, 1992). We studied [55Fe]hemin uptake in P. gingivalis grown under conditions of hemin starvation (Omp26 expressed on the outer membrane surface) and hemin excess (Omp26 not expressed on surface). [55Fe]hemin uptake occurred rapidly in hemin-starved cells which incorporated up to 70% of total [55Fe]hemin within 3 min. P. gingivalis grown under hemin-starved conditions or treated with the iron chelator 2,2'-bipyridyl to induce an iron stress took up six times more [55Fe]hemin than hemin-excess-grown cells. Polyclonal monospecific anti-Omp26 antibody added to hemin-starved cells inhibited [55Fe]hemin uptake by more than 50%, whereas preimmune serum had no effect. [55Fe]hemin uptake in hemin-starved P. gingivalis was inhibited (36 to 67%) in the presence of equimolar amounts of unlabeled hemin, protoporphyrin IX, zinz protoporphyrin, and Congo red dye but was not inhibited in the presence of non-hemin-containing iron sources. Heat shock treatment (45 degrees C) of hemin-excess-grown P. gingivalis (which cases translocation of Omp26 to the surface) increased [55Fe]hemin uptake by threefold after 3 min in comparison with cells grown at 37 degrees C. However, no [55Fe] hemin uptake beyond 3 min was observed in either hemin-excess-grown or hemin-starved cells exposed to heat shock. In experiments using heterobifunctional cross-linker analysis, hemin and selected porphyrins were cross-linked to Omp26 in hemin-starved P. gingivalis, but no cross-linking was seen with hemin-excess-grown cells. However, cross-linking of hemin to Omp26 was observed after heat shock treatment of hemin-excess-grown cells. Finally, anti-Omp26 antibody inhibited cross-linked of hemin to Omp26. These findings indicate that hemin binding and transport into P.gingivalis cell mediated by Omp26.
一种26 kDa的外膜蛋白(Omp26)被认为在牙龈卟啉单胞菌获取血红素的过程中发挥作用(T. E. Bramanti和S. C. Holt,《细菌学杂志》174:5827 - 5839,1992)。我们研究了在血红素饥饿条件下(外膜表面表达Omp26)和血红素过量条件下(表面不表达Omp26)生长的牙龈卟啉单胞菌对[55Fe]血红素的摄取情况。[55Fe]血红素在血红素饥饿的细胞中摄取迅速,在3分钟内摄取的[55Fe]血红素总量高达70%。在血红素饥饿条件下生长或用铁螯合剂2,2'-联吡啶处理以诱导铁应激的牙龈卟啉单胞菌摄取的[55Fe]血红素比在血红素过量条件下生长的细胞多六倍。添加到血红素饥饿细胞中的多克隆单特异性抗Omp26抗体抑制了[55Fe]血红素摄取超过50%,而免疫前血清则没有作用。在等摩尔量的未标记血红素、原卟啉IX、锌原卟啉和刚果红染料存在的情况下,血红素饥饿的牙龈卟啉单胞菌对[55Fe]血红素的摄取受到抑制(36%至67%),但在不含血红素的铁源存在时则不受抑制。对在血红素过量条件下生长的牙龈卟啉单胞菌进行热休克处理(45℃)(这会使Omp26转运到表面),与在37℃下生长的细胞相比,3分钟后[55Fe]血红素摄取增加了三倍。然而,在暴露于热休克的血红素过量生长或血红素饥饿的细胞中,3分钟后均未观察到[55Fe]血红素摄取。在使用异双功能交联剂分析的实验中,血红素和选定的卟啉在血红素饥饿的牙龈卟啉单胞菌中与Omp26交联,但在血红素过量生长的细胞中未观察到交联。然而,对血红素过量生长的细胞进行热休克处理后,观察到血红素与Omp26的交联。最后,抗Omp26抗体抑制了血红素与Omp26的交联。这些发现表明,血红素与牙龈卟啉单胞菌细胞的结合及转运是由Omp26介导的。