Yu X J, McBride J W, Walker D H
Department of Pathology and WHO Collaborating Center for Tropical Diseases, The University of Texas Medical Branch at Galveston, Galveston, Texas 77555-0609, USA.
J Clin Microbiol. 1999 Apr;37(4):1137-43. doi: 10.1128/JCM.37.4.1137-1143.1999.
The Ehrlichia chaffeensis 28-kDa outer membrane protein (p28) gene was sequenced completely by genomic walking with adapter PCR. The DNA sequence of the p28 gene was nearly identical to the previously reported sequence (N. Ohashi, N. Zhi, Y. Zhang, and Y. Rikihisa, Infect. Immun. 66:132-139, 1998), but analysis of a further 75 bp on the 5' end of the gene revealed DNA that encoded a 25-amino-acid signal sequence. The leader sequence was removed from the N terminus of a 30-kDa precursor to generate the mature p28 protein. A monoclonal antibody (MAb), 1A9, recognizing four outer membrane proteins of E. chaffeensis (Arkansas strain) including the 25-, 26-, 27-, and 29-kDa proteins (X.-J. Yu, P. Brouqui, J. S. Dumler, and D. Raoult, J. Clin. Microbiol. 31:3284-3288, 1993) reacted with the recombinant p28 protein. This result indicated that the four proteins recognized by MAb 1A9 were encoded by the multiple genes of the 28-kDa protein family. DNA sequence alignment analysis revealed divergence of p28 among all five human isolates of E. chaffeensis. The E. chaffeensis strains could be divided into three genetic groups on the basis of the p28 gene. The first group consisted of the Sapulpa and St. Vincent strains. They had predicted amino acid sequences identical to each other. The second group contained strain 91HE17 and strain Jax, which only showed 0.4% divergence from each other. The third group contained the Arkansas strain only. The amino acid sequences of p28 differed by 11% between the first two groups, by 13.3% between the first and third groups, and by 13.1% between the second and third groups. The presence of antigenic variants of p28 among the strains of E. chaffeensis and the presence of multiple copies of heterogeneous genes suggest a possible mechanism by which E. chaffeensis might evade the host immune defenses. Whether or not immunization with the p28 of one strain of E. chaffeensis would confer cross-protection against other strains needs to be investigated.
利用衔接子聚合酶链反应(adapter PCR)通过基因组步移法对恰菲埃立克体(Ehrlichia chaffeensis)的28 kDa外膜蛋白(p28)基因进行了全序列测定。p28基因的DNA序列与先前报道的序列几乎完全相同(N. Ohashi、N. Zhi、Y. Zhang和Y. Rikihisa,《感染与免疫》,66:132 - 139,1998年),但对该基因5'端另外75 bp的分析揭示了编码一个25个氨基酸信号序列的DNA。从前体30 kDa蛋白的N端去除前导序列以产生成熟的p28蛋白。一种单克隆抗体(MAb)1A9,可识别恰菲埃立克体(阿肯色菌株)的四种外膜蛋白,包括25 kDa、26 kDa、27 kDa和29 kDa蛋白(X.-J. Yu、P. Brouqui、J. S. Dumler和D. Raoult,《临床微生物学杂志》,31:3284 - 3288,1993年),与重组p28蛋白发生反应。这一结果表明,MAb 1A9识别的这四种蛋白由28 kDa蛋白家族的多个基因编码。DNA序列比对分析揭示了恰菲埃立克体所有五个人类分离株中p28的差异。基于p28基因,恰菲埃立克体菌株可分为三个遗传组。第一组由萨普尔帕(Sapulpa)菌株和圣文森特(St. Vincent)菌株组成。它们预测的氨基酸序列彼此相同。第二组包含91HE17菌株和Jax菌株,它们彼此之间仅显示0.4%的差异。第三组仅包含阿肯色菌株。前两组之间p28的氨基酸序列差异为11%,第一组和第三组之间为13.3%,第二组和第三组之间为13.1%。恰菲埃立克体菌株中p28抗原变异体的存在以及异源基因多拷贝的存在提示了恰菲埃立克体可能逃避宿主免疫防御的一种机制。用恰菲埃立克体一个菌株的p28进行免疫是否能对其他菌株提供交叉保护有待研究。