Jenner Dominic C, Dassa Elie, Whatmore Adrian M, Atkins Helen S
Department of Biomedical Sciences, Defence Science and Technology Laboratory, Porton Down, Salisbury, Wiltshire SP4 0JQ, UK.
Comp Funct Genomics. 2009;2009:354649. doi: 10.1155/2009/354649. Epub 2010 Feb 11.
Brucellosis is a prevalent zoonotic disease and is endemic in the Middle East, South America, and other areas of the world. In this study, complete inventories of putative functional ABC systems of five Brucella species have been compiled and compared. ABC systems of Brucella melitensis 16M, Brucella abortus 9-941, Brucella canis RM6/66, Brucella suis 1330, and Brucella ovis 63/290 were identified and aligned. High numbers of ABC systems, particularly nutrient importers, were found in all Brucella species. However, differences in the total numbers of ABC systems were identified (B. melitensis, 79; B. suis, 72; B. abortus 64; B. canis, 74; B. ovis, 59) as well as specific differences in the functional ABC systems of the Brucella species. Since B. ovis is not known to cause human brucellosis, functional ABC systems absent in the B. ovis genome may represent virulence factors in human brucellosis.
布鲁氏菌病是一种常见的人畜共患病,在中东、南美洲和世界其他地区呈地方性流行。在本研究中,已对五种布鲁氏菌假定功能性ABC系统的完整清单进行了汇编和比较。对马尔他布鲁氏菌16M、流产布鲁氏菌9-941、犬布鲁氏菌RM6/66、猪布鲁氏菌1330和绵羊布鲁氏菌63/290的ABC系统进行了鉴定和比对。在所有布鲁氏菌物种中均发现了大量的ABC系统,尤其是营养物质转运体。然而,已确定ABC系统总数存在差异(马尔他布鲁氏菌79个;猪布鲁氏菌72个;流产布鲁氏菌64个;犬布鲁氏菌74个;绵羊布鲁氏菌59个),并且布鲁氏菌物种的功能性ABC系统也存在特定差异。由于绵羊布鲁氏菌不被认为会导致人类布鲁氏菌病,因此绵羊布鲁氏菌基因组中不存在的功能性ABC系统可能代表人类布鲁氏菌病中的毒力因子。