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携带BXSB小鼠Y染色体的染色体置换系小鼠的研究。

Studies of consomic mice bearing the Y chromosome of the BXSB mouse.

作者信息

Hudgins C C, Steinberg R T, Klinman D M, Reeves M J, Steinberg A D

出版信息

J Immunol. 1985 Jun;134(6):3849-54.

PMID:3989299
Abstract

Previous studies have demonstrated that the Y chromosome of the BXSB mouse can lead to accelerated autoimmunity in inbred BXSB mice and in F1 hybrids. To additionally study the effects of the BXSB-Y, we have studied three sets of Y-consomic mice, NZB.BXSB-Y, NZW.BXSB-Y, and CBA/J.BXSB-Y, each consisting of background genes from the non-BXSB parent and the Y chromosome from the BXSB mouse. The effect of the BXSB-Y on autoantibody production, immunopathology, and survival was assessed. We found that the CBA/J.BXSB-Y mice showed few differences from control CBA/J males. In contrast, NZW.BXSB-Y males had accelerated renal and cardiac disease and early death, resembling that previously reported for (NZW X BXSB)F1 mice. NZB.BXSB-Y males had accelerated anti-erythrocyte autoantibodies but not accelerated anti-DNA. They lived almost as long as NZB mice. The presence of the BXSB-Y in all of the consomic mice was confirmed by crossing the consomic mice with BXSB females and demonstrating accelerated disease in the male offspring. This study demonstrates that the BXSB-Y chromosome autoimmune accelerating factor does not act alone but operates through other genes, and that the effects on different genetic backgrounds are different. The studies have implications for human lupus; they also provide a basis for future molecular biology studies of the BXSB-Y and the genes upon which it acts.

摘要

先前的研究表明,BXSB小鼠的Y染色体可导致近交系BXSB小鼠及F1代杂种小鼠的自身免疫加速。为进一步研究BXSB-Y的作用,我们研究了三组Y染色体代换系小鼠,即NZB.BXSB-Y、NZW.BXSB-Y和CBA/J.BXSB-Y,每组均由非BXSB亲本的背景基因和BXSB小鼠的Y染色体组成。评估了BXSB-Y对自身抗体产生、免疫病理学及存活情况的影响。我们发现,CBA/J.BXSB-Y小鼠与对照CBA/J雄性小鼠几乎没有差异。相比之下,NZW.BXSB-Y雄性小鼠出现了加速发展的肾脏和心脏疾病并过早死亡,类似于先前报道的(NZW×BXSB)F1代小鼠。NZB.BXSB-Y雄性小鼠的抗红细胞自身抗体加速产生,但抗DNA抗体未加速产生。它们的寿命几乎与NZB小鼠一样长。通过将这些代换系小鼠与BXSB雌性小鼠杂交,并证明雄性后代疾病加速发展,证实了所有代换系小鼠中均存在BXSB-Y。本研究表明,BXSB-Y染色体自身免疫加速因子并非单独起作用,而是通过其他基因发挥作用,并且对不同遗传背景的影响有所不同。这些研究对人类狼疮具有启示意义;它们也为未来对BXSB-Y及其作用的基因进行分子生物学研究提供了基础。

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