Cullen Paul A, Cordwell Stuart J, Bulach Dieter M, Haake David A, Adler Ben
Bacterial Pathogenesis Research Group, Department of Microbiology, Monash University, Victoria 3800, Australia.
Infect Immun. 2002 May;70(5):2311-8. doi: 10.1128/IAI.70.5.2311-2318.2002.
Recombinant leptospiral outer membrane proteins (OMPs) can elicit immunity to leptospirosis in a hamster infection model. Previously characterized OMPs appear highly conserved, and thus their potential to stimulate heterologous immunity is of critical importance. In this study we undertook a global analysis of leptospiral OMPs, which were obtained by Triton X-114 extraction and phase partitioning. Outer membrane fractions were isolated from Leptospira interrogans serovar Lai grown at 20, 30, and 37 degrees C with or without 10% fetal calf serum and, finally, in iron-depleted medium. The OMPs were separated by two-dimensional gel electrophoresis. Gel patterns from each of the five conditions were compared via image analysis, and 37 gel-purified proteins were tryptically digested and characterized by mass spectrometry (MS). Matrix-assisted laser desorption ionization-time-of-flight MS was used to rapidly identify leptospiral OMPs present in sequence databases. Proteins identified by this approach included the outer membrane lipoproteins LipL32, LipL36, LipL41, and LipL48. No known proteins from any cellular location other than the outer membrane were identified. Tandem electrospray MS was used to obtain peptide sequence information from eight novel proteins designated pL18, pL21, pL22, pL24, pL45, pL47/49, pL50, and pL55. The expression of LipL36 and pL50 was not apparent at temperatures above 30 degrees C or under iron-depleted conditions. The expression of pL24 was also downregulated after iron depletion. The leptospiral major OMP LipL32 was observed to undergo substantial cleavage under all conditions except iron depletion. Additionally, significant downregulation of these mass forms was observed under iron limitation at 30 degrees C, but not at 30 degrees C alone, suggesting that LipL32 processing is dependent on iron-regulated extracellular proteases. However, separate cleavage products responded differently to changes in growth temperature and medium constituents, indicating that more than one process may be involved in LipL32 processing. Furthermore, under iron-depleted conditions there was no concomitant increase in the levels of the intact form of LipL32. The temperature- and iron-regulated expression of LipL36 and the iron-dependent cleavage of LipL32 were confirmed by immunoblotting with specific antisera. Global analysis of the cellular location and expression of leptospiral proteins will be useful in the annotation of genomic sequence data and in providing insight into the biology of Leptospira.
重组钩端螺旋体外膜蛋白(OMPs)可在仓鼠感染模型中引发对钩端螺旋体病的免疫反应。先前已鉴定的OMPs似乎高度保守,因此它们刺激异源免疫的潜力至关重要。在本研究中,我们对通过Triton X - 114提取和相分离获得的钩端螺旋体OMPs进行了全面分析。从问号钩端螺旋体赖型菌株在20、30和37摄氏度下培养,添加或不添加10%胎牛血清,以及最终在缺铁培养基中培养所获得的外膜组分中分离出OMPs。通过二维凝胶电泳分离OMPs。通过图像分析比较了五种条件下的凝胶图谱,对37种凝胶纯化的蛋白质进行胰蛋白酶消化并通过质谱(MS)进行鉴定。采用基质辅助激光解吸电离飞行时间质谱快速鉴定序列数据库中存在的钩端螺旋体OMPs。通过这种方法鉴定的蛋白质包括外膜脂蛋白LipL32、LipL36、LipL41和LipL48。未鉴定到除外膜以外任何细胞位置的已知蛋白质。采用串联电喷雾质谱从8种新蛋白质(命名为pL18、pL21、pL22、pL24、pL45、pL47/49、pL50和pL55)中获取肽序列信息。在30摄氏度以上或缺铁条件下,LipL36和pL50的表达不明显。缺铁后pL24的表达也下调。观察到钩端螺旋体主要OMP LipL32在除缺铁外的所有条件下均发生大量裂解。此外,在30摄氏度铁限制条件下观察到这些质量形式显著下调,但仅在30摄氏度时未观察到,这表明LipL32的加工依赖于铁调节的细胞外蛋白酶。然而,不同的裂解产物对生长温度和培养基成分变化的反应不同,表明LipL32加工可能涉及多个过程。此外,在缺铁条件下,LipL32完整形式的水平没有相应增加。通过用特异性抗血清进行免疫印迹证实了LipL36的温度和铁调节表达以及LipL32的铁依赖性裂解。对钩端螺旋体蛋白质的细胞定位和表达进行全面分析将有助于基因组序列数据的注释,并深入了解钩端螺旋体的生物学特性。