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鉴定控制实验性细粒棘球蚴囊尾蚴生长限制的基因座。

Identification of loci controlling restriction of parasite growth in experimental Taenia crassiceps cysticercosis.

机构信息

Departament of Immunology, Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Ciudad de México, México.

出版信息

PLoS Negl Trop Dis. 2011 Dec;5(12):e1435. doi: 10.1371/journal.pntd.0001435. Epub 2011 Dec 20.

Abstract

Human neurocysticercosis (NC) caused by Taenia solium is a parasitic disease of the central nervous system that is endemic in many developing countries. In this study, a genetic approach using the murine intraperitoneal cysticercosis caused by the related cestode Taenia crassiceps was employed to identify host factors that regulate the establishment and proliferation of the parasite. A/J mice are permissive to T. crassiceps infection while C57BL/6J mice (B6) are comparatively restrictive, with a 10-fold difference in numbers of peritoneal cysticerci recovered 30 days after infection. The genetic basis of this inter-strain difference was explored using 34 AcB/BcA recombinant congenic strains derived from A/J and B6 progenitors, that were phenotyped for T. crassiceps replication. In agreement with their genetic background, most AcB strains (A/J-derived) were found to be permissive to infection while most BcA strains (B6-derived) were restrictive with the exception of a few discordant strains, together suggesting a possible simple genetic control. Initial haplotype association mapping using >1200 informative SNPs pointed to linkages on chromosomes 2 (proximal) and 6 as controlling parasite replication in the AcB/BcA panel. Additional linkage analysis by genome scan in informative [AcB55xDBA/2]F1 and F2 mice (derived from the discordant AcB55 strain), confirmed the effect of chromosome 2 on parasite replication, and further delineated a major locus (LOD = 4.76, p<0.01; peak marker D2Mit295, 29.7 Mb) that we designate Tccr1 (T. crassiceps cysticercosis restrictive locus 1). Resistance alleles at Tccr1 are derived from AcB55 and are inherited in a dominant fashion. Scrutiny of the minimal genetic interval reveals overlap of Tccr1 with other host resistance loci mapped to this region, most notably the defective Hc/C5 allele which segregates both in the AcB/BcA set and in the AcB55xDBA/2 cross. These results strongly suggest that the complement component 5 (C5) plays a critical role in early protective inflammatory response to infection with T. crassiceps.

摘要

人类脑囊虫病(NC)是由猪带绦虫引起的中枢神经系统寄生虫病,在许多发展中国家流行。在这项研究中,我们使用相关的阔节裂头绦虫(Taenia crassiceps)引起的鼠腹腔内囊尾蚴病,采用遗传方法来鉴定宿主调节寄生虫建立和增殖的因素。A/J 小鼠对 T. crassiceps 感染具有易感性,而 C57BL/6J 小鼠(B6)则相对受限,感染后 30 天回收的腹腔囊尾蚴数量相差 10 倍。利用源自 A/J 和 B6 亲本的 34 个 AcB/BcA 重组近交系,探索了这种品系间差异的遗传基础,并对 T. crassiceps 复制进行了表型分析。与它们的遗传背景一致,大多数 AcB 株(源自 A/J)被发现对感染具有易感性,而大多数 BcA 株(源自 B6)则具有限制性,除了少数不一致的株系外,这表明可能存在简单的遗传控制。使用 >1200 个信息性 SNP 进行初始单倍型关联图谱绘制,指出染色体 2(近端)和 6 上的连锁与 AcB/BcA 面板中寄生虫复制有关。在信息丰富的 [AcB55xDBA/2]F1 和 F2 小鼠(源自不一致的 AcB55 株系)中进行的附加连锁分析,证实了染色体 2 对寄生虫复制的影响,并进一步描绘了一个主要位点(LOD = 4.76,p<0.01;峰值标记 D2Mit295,29.7 Mb),我们将其命名为 Tccr1(T. crassiceps 囊尾蚴限制性位点 1)。Tccr1 的抗性等位基因来自 AcB55,并且以显性方式遗传。对最小遗传间隔的仔细研究显示,Tccr1 与映射到该区域的其他宿主抗性基因座重叠,特别是缺陷型 Hc/C5 等位基因,该基因座在 AcB/BcA 集合和 AcB55xDBA/2 杂交中均分离。这些结果强烈表明补体成分 5(C5)在对 T. crassiceps 的感染的早期保护性炎症反应中起关键作用。

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本文引用的文献

1
A helminth cestode parasite express an estrogen-binding protein resembling a classic nuclear estrogen receptor.
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2
Genetic control of susceptibility to infection with Candida albicans in mice.
PLoS One. 2011 Apr 20;6(4):e18957. doi: 10.1371/journal.pone.0018957.
3
Characterization of a major colon cancer susceptibility locus (Ccs3) on mouse chromosome 3.
Oncogene. 2010 Feb 4;29(5):647-61. doi: 10.1038/onc.2009.369. Epub 2009 Nov 16.
4
Taenia crassiceps: in vivo and in vitro models.
Parasitology. 2010 Mar;137(3):335-46. doi: 10.1017/S0031182009991442. Epub 2009 Oct 19.
7
Complement and immune defense: from innate immunity to human diseases.
Immunol Lett. 2009 Sep 22;126(1-2):1-7. doi: 10.1016/j.imlet.2009.07.005. Epub 2009 Jul 17.
8
Differential response of antigen presenting cells from susceptible and resistant strains of mice to Taenia crassiceps infection.
Infect Genet Evol. 2009 Dec;9(6):1115-27. doi: 10.1016/j.meegid.2009.05.011. Epub 2009 May 22.
10
Efficient control of population structure in model organism association mapping.
Genetics. 2008 Mar;178(3):1709-23. doi: 10.1534/genetics.107.080101.

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