Medina E, North R J
Trudeau Institute, Saranac Lake, New York 12983, USA.
J Exp Med. 1996 Mar 1;183(3):1045-51. doi: 10.1084/jem.183.3.1045.
The superior resistance of some strains of mice over others to infection with certain intracellular pathogens, including the vaccine strain of Mycobacterium bovis, bacillus Calmette Guerin (BCG), is determined by a gene associated with a small segment of chromosome 1 designated by Ity/Lsh/Bcg locus, referred to here as the Bcg locus. DBA/2 mice containing the dominant resistant allele of the Bcg gene (Bcgr), major histocompatibility complex-compatible BALB/c mice containing the recessive susceptible allele (Bcgs), and congenic C.D2-N20 Bcgr, which are genetically the same as BALB/c mice except for possessing a small piece of DBA/2 chromosome 1 containing the Bcg locus, were used to determine whether the Bcg gene determines resistance to infection with the virulent H37Rv strain of Mycobacterium tuberculosis (Mtb). According to the survival times of Bcgr and Bcgs mice infected via either the intravenous or respiratory route, Bcgr mice proved much less, rather than more, resistant to Mtb infection than Bcgs mice. Shorter survival times of Bcgr mice were associated with an inferior capacity to control Mtb growth in their lungs and to retard the development of Mtb-induced pathology in this organ. Resistance to Mtb infection was a dominant trait in the F1 progeny of Bcgr and Bcgs mice. The results show that resistance to Mtb is not determined by the resistance allele of the Bcg gene nor by the recently isolated candidate Bcg gene Nramp1, located in the Bcg locus.
某些品系的小鼠相较于其他品系对包括牛分枝杆菌疫苗株卡介苗(BCG)在内的某些细胞内病原体感染具有更强的抵抗力,这是由一个与1号染色体一小段相关的基因决定的,该基因位点被命名为Ity/Lsh/Bcg位点,此处简称为Bcg位点。携带Bcg基因显性抗性等位基因(Bcgr)的DBA/2小鼠、携带隐性易感等位基因(Bcgs)的主要组织相容性复合体相容的BALB/c小鼠,以及同基因的C.D2 - N20 Bcgr(除了拥有一小段含有Bcg位点的DBA/2 1号染色体外,其基因与BALB/c小鼠相同)被用于确定Bcg基因是否决定对结核分枝杆菌(Mtb)强毒株H37Rv感染的抵抗力。根据经静脉或呼吸道途径感染的Bcgr和Bcgs小鼠的存活时间,结果表明Bcgr小鼠对Mtb感染的抵抗力比Bcgs小鼠弱得多,而非更强。Bcgr小鼠存活时间较短与它们控制肺部Mtb生长以及延缓该器官中Mtb诱导病变发展的能力较差有关。对Mtb感染的抵抗力在Bcgr和Bcgs小鼠的F1后代中是显性性状。结果表明,对Mtb的抵抗力既不由Bcg基因的抗性等位基因决定,也不由位于Bcg位点的最近分离出的候选Bcg基因Nramp1决定。