Kim Sun-Hoi, Ahn Sun-Hee, Lee Jong-Hee, Lee Eun-Mi, Kim Nam-Hyun, Park Kee-Jai, Kong In-Soo
Department of Biotechnology and Bioengineering, Pukyong National University, 608-737, Busan, Republic of Korea.
Arch Microbiol. 2003 Oct;180(4):240-50. doi: 10.1007/s00203-003-0582-z. Epub 2003 Aug 7.
The pmm gene from Vibrio furnissii, which encodes phosphomannomutase (PMM), was cloned and sequenced. The open reading frame consisted of 1,434 bp, encoding a polypeptide of 477 amino acids with a molecular mass of 53,325 Da. The predicted amino acid sequence of V. furnissii PMM showed high similarity with PMMs from other enteric bacteria, such as V. cholerae, Salmonella sp. and Escherichia coli. The PMM protein was overexpressed in E. coli as a His(6)-tagged recombinant protein. The estimated apparent K(m )and k(cat) values of the purified recombinant protein for mannose 1-phosphate were about 60 microM and 800 min(-1), respectively. To investigate the biochemical functions and the role of pmm in the virulence of V. furnissii, a pmm knock-out mutant was constructed by homologous recombination mutation. Under the various physical conditions, cell numbers of the wild-type and the mutant did not differ. Oral introduction of bacterial suspensions to a mouse model showed that the pmm-deficient mutant decreased in viability at the intestine. Microscopy of the isolated intestines from mice revealed significant damage after 3 days in intestinal mucosa infected with the wild-type as compared with the mutant. The pmm-deficient mutant caused a reduction of virulence in mice and the loss of O-antigen polysaccharide, and showed low resistance relative to the wild-type when incubated with normal human serum.
克隆并测序了来自弗氏弧菌的pmm基因,该基因编码磷酸甘露糖变位酶(PMM)。开放阅读框由1434个碱基对组成,编码一个由477个氨基酸组成的多肽,分子量为53325道尔顿。弗氏弧菌PMM的预测氨基酸序列与其他肠道细菌的PMM具有高度相似性,如霍乱弧菌、沙门氏菌属和大肠杆菌。PMM蛋白在大肠杆菌中作为His(6)标签重组蛋白过表达。纯化的重组蛋白对磷酸甘露糖的估计表观K(m)和k(cat)值分别约为60微摩尔和800分钟(-1)。为了研究pmm在弗氏弧菌毒力中的生化功能和作用,通过同源重组突变构建了一个pmm基因敲除突变体。在各种物理条件下,野生型和突变体的细胞数量没有差异。将细菌悬液经口引入小鼠模型显示,pmm缺陷突变体在肠道中的活力下降。对从小鼠分离的肠道进行显微镜检查发现,与突变体相比,感染野生型的肠道黏膜在3天后出现明显损伤。pmm缺陷突变体导致小鼠毒力降低和O抗原多糖缺失,并且在与正常人血清孵育时相对于野生型表现出低抗性。