Amimoto Katsuhiko, Sasaki Yoshimasa, Fukuyama Shin-ichi, Tamura Yutaka
Kyoto Biken Laboratories Inc., Kyoto 611-0041, Japan.
Vet Microbiol. 2006 Apr 16;114(1-2):51-9. doi: 10.1016/j.vetmic.2005.10.039. Epub 2005 Dec 5.
Clostridium septicum alpha-toxin genes were sequenced with the polymerase chain reaction (PCR) products amplified from DNAs of 25 C. septicum strains, and were classified into 10 patterns. Alpha-toxins were purified from the culture supernatant of four C. septicum strains (strains No. 44, Kagoshima 8, Mie and Tokachi) which were specially chosen from patterns of the deduced amino acid sequences. The molecular weights of the alpha-toxins were not different according to sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) analysis. However, the isoelectric points between the alpha-toxins of No. 44 and Tokachi strains differed markedly. Cross-neutralization tests were performed with purified alpha-toxins and antitoxins in mice and in Vero cells. Each antitoxin showed roughly the same titers against the four alpha-toxins in mice and completely identical titers against these in Vero cells. Calves immunized with toxoid prepared from the culture supernatant of No.44 strain were challenged by exposure to spores of Mie strain. The toxoid conferred protection against the challenge in calves. From these results, although genetic variation has been observed within the C. septicum alpha-toxin gene, C. septicum strains toxoid of strain No.44 induces protective immunity against exposure to C. septicum that produce other subtypes of alpha-toxin containing several different amino acid residues.
用聚合酶链反应(PCR)扩增25株败血梭菌DNA所得到的产物对败血梭菌α毒素基因进行测序,并将其分为10种模式。从推导的氨基酸序列模式中特别挑选出4株败血梭菌(44号菌株、鹿儿岛8号菌株、三重菌株和十胜菌株),从其培养上清液中纯化α毒素。根据十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)分析,α毒素的分子量没有差异。然而,44号菌株和十胜菌株的α毒素之间的等电点有明显差异。用纯化的α毒素和抗毒素在小鼠和Vero细胞中进行交叉中和试验。每种抗毒素在小鼠体内对这4种α毒素的效价大致相同,在Vero细胞中对它们的效价完全相同。用44号菌株培养上清液制备的类毒素免疫犊牛,然后用三重菌株的孢子对其进行攻击。该类毒素对犊牛的攻击具有保护作用。从这些结果来看,虽然在败血梭菌α毒素基因内观察到了基因变异,但44号菌株的败血梭菌类毒素可诱导产生针对接触产生含几种不同氨基酸残基的其他α毒素亚型的败血梭菌的保护性免疫。