van den Akker Willem M R
Max-Planck-Institut für Biologie, Abteilung Infektionsbiologie, Spemannstrasse 34, D-72076 Tübingen, Germany.
Microbiology (Reading). 1998 Jun;144 ( Pt 6):1527-1535. doi: 10.1099/00221287-144-6-1527.
LPSs play an important role in bacterial pathogenesis. In this study, the LPS expression of the seven known Bordetella species and its dependency on growth temperature was analysed by oxidative silver staining of proteinase-K-treated whole bacteria separated by Tricine-SDS-PAGE. The bordetellae were found to have extensively variable LPS in a species-specific way. In addition, the human and ovine Bordetella parapertussis strains exhibited host-specific LPS expression. LPSs from human B. parapertussis strains grown at 37 and 25 degrees C were distinct. Growth temperature also affected LPS production by several Bordetella bronchiseptica strains. In some of these cases, BvgAS, the global regulator of virulence factors, was involved in this regulation of LPS biosynthesis. In contrast, no evidence was found for the involvement of the Bordetella pertussis BvgAS system in regulation of LPS synthesis. The obligate human pathogens B. pertussis and Bordetella holmesii are closely related but were shown to produce immunologically distinct LPSs. These species are isolated from the upper respiratory tract and blood, respectively. This raises several interesting questions concerning the potential role of LPS as a virulence factor in the infection processes.
脂多糖(LPSs)在细菌致病机制中发挥着重要作用。在本研究中,通过对经蛋白酶K处理后经Tricine - SDS - PAGE分离的全菌进行氧化银染色,分析了七种已知博德特氏菌属细菌的LPS表达及其对生长温度的依赖性。发现博德特氏菌属细菌具有种特异性的广泛可变的LPS。此外,人源和羊源百日咳博德特氏菌菌株表现出宿主特异性的LPS表达。在37℃和25℃下生长的人源百日咳博德特氏菌菌株的LPS不同。生长温度也影响了几种支气管败血博德特氏菌菌株的LPS产生。在其中一些情况下,毒力因子的全局调节因子BvgAS参与了LPS生物合成的这种调节。相比之下,未发现百日咳博德特氏菌BvgAS系统参与LPS合成调节的证据。专性人类病原体百日咳博德特氏菌和霍氏博德特氏菌密切相关,但显示产生免疫上不同的LPS。这些菌种分别从上呼吸道和血液中分离得到。这就引发了几个关于LPS作为感染过程中毒力因子的潜在作用的有趣问题。