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来自Fas缺陷型小鼠品系的具有独特遗传方式的自发性强直性关节病的基因特征分析。

Genetic characterisation of spontaneous ankylosing arthropathy with unique inheritance from Fas-deficient strains of mice.

作者信息

Mori S, Zhang M-C, Tanda N, Date F, Nose M, Furukawa H, Ono M

机构信息

Department of Oral Medicine and Surgery, Tohoku University Graduate School of Medicine, 2-1 Seiryo, Aoba, Sendai, Miyagi 980-8575, Japan.

出版信息

Ann Rheum Dis. 2006 Oct;65(10):1273-8. doi: 10.1136/ard.2005.050526. Epub 2006 Mar 28.

Abstract

BACKGROUND

The spontaneous onset of macroscopic arthropathy in the ankle of the particular F1 mice descended from two Fas-deficient strains of mice; a mutant substrain of MRL/Mp.Fas(lpr) (MRL/rpl) and C3H/He.Fas(lpr) (C3H/lpr) was recently observed.

AIM

To histopathologically characterise and genetically interpret the unique inheritance mode of disease in this arthropathy model.

METHODS

MRL/rpl, C3H/lpr, (MRL/rpl x C3H/lpr; MC) F1, (C3H/lpr x MRL/rpl; CM) F1 and MCF2 mice were bred under specific pathogen-free conditions. Histopathological grade of arthropathy was determined at 6 months by examination under a light microscope. To search for a linkage locus to the arthropathy, the whole genome of selected 48 male MCF2 mice with 71 polymorphic microsatellite markers was scanned, followed by quantitative trait locus analysis.

RESULTS

The incidence of microscopically defined arthropathy in the male and female MCF1 groups was 100% and 19.4%, respectively. No incidence was observed in the parental strains, MRL/rpl and C3H/lpr, and in CMF1 mice. In the MCF1 mice, the arthropathy mainly affected the ankle joints and was histopathologically characterised by marked entheseal proliferation with chondrocytic differentiation and ossification in the ankle joints, the manifestations similar to ankylosing enthesitis reported previously. An MRL/rpl-derived autosomal dominant susceptibility locus was mapped in the distal of D7Mit68 (60 cM) to the ankylosis onset.

CONCLUSION

The MCF1 mice stably develop spontaneous ankylosing disorders in the ankle, with a male predominance. The unique inheritance mode of ankylosis is possibly interpreted by the genetic interaction between the autosomal dominant locus and a Y-linked locus.

摘要

背景

从两种Fas缺陷型小鼠品系衍生而来的特定F1小鼠踝关节出现了肉眼可见的关节病自发发作;最近观察到MRL/Mp.Fas(lpr)(MRL/rpl)的一个突变亚系和C3H/He.Fas(lpr)(C3H/lpr)。

目的

对该关节病模型中疾病的独特遗传模式进行组织病理学特征描述和遗传学解释。

方法

将MRL/rpl、C3H/lpr、(MRL/rpl×C3H/lpr;MC)F1、(C3H/lpr×MRL/rpl;CM)F1和MCF2小鼠在无特定病原体条件下饲养。在6个月时通过光学显微镜检查确定关节病的组织病理学分级。为了寻找与关节病相关的连锁位点,对48只雄性MCF2小鼠的全基因组用71个多态性微卫星标记进行扫描,随后进行数量性状位点分析。

结果

雄性和雌性MCF1组中显微镜下定义的关节病发生率分别为100%和19.4%。在亲本品系MRL/rpl和C3H/lpr以及CMF1小鼠中未观察到发病率。在MCF1小鼠中,关节病主要影响踝关节,组织病理学特征为踝关节明显的附着点增殖,伴有软骨细胞分化和骨化,这些表现与先前报道的强直性附着点炎相似。一个源自MRL/rpl的常染色体显性易感性位点被定位在D7Mit68(60 cM)远端至关节强硬发作处。

结论

MCF1小鼠在踝关节稳定地发展出自发性强直性疾病,以雄性为主。关节强硬的独特遗传模式可能由常染色体显性位点和Y连锁位点之间的基因相互作用来解释。

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