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自身免疫性Yaa(+)-Yaa-骨髓嵌合小鼠中Yaa+ B细胞的选择性自身抗体产生

Selective autoantibody production by Yaa+ B cells in autoimmune Yaa(+)-Yaa- bone marrow chimeric mice.

作者信息

Merino R, Fossati L, Lacour M, Izui S

机构信息

Department of Pathology, Centre Médical Universitaire, University of Geneva, Switzerland.

出版信息

J Exp Med. 1991 Nov 1;174(5):1023-9. doi: 10.1084/jem.174.5.1023.

Abstract

The accelerated autoimmune syndrome observed in BXSB/MpJ male mice is associated with the presence on the Y chromosome of an as yet unidentified mutant gene, designated Y chromosome-linked autoimmune acceleration (Yaa). To study the mechanisms by which the Yaa gene accelerates and/or induces the production of autoantibodies, we have developed double-congenic bone marrow chimeras containing B cells from autoimmune males carrying the Yaa gene, and from nonautoimmune male or female mice lacking it and differing by the Igh allotype. The analysis of the allotype of total immunoglobulins and anti-DNA antibodies in Yaa+ male-normal female (Yaa-) chimeric mice revealed that the selective activation of B cells from autoimmune Yaa+ male mice was responsible for the hypergammaglobulinemia and autoantibody production. This phenomenon was not due to an anti-HY interaction between female T helper cells and male B cells, because first, Yaa+ B cells were selectively stimulated to produce autoantibodies in Yaa+ male-Yaa- male chimeric mice; and second, normal male and female chimeras failed to develop an autoimmune syndrome. In addition, the fact that both B cell populations in Yaa(+)-Yaa- chimeras similarly responded to a foreign antigen, human IgG, argues against the possibility that the selective activation of Yaa+ B cells may be due to their hyper-responsiveness to T helper signals. We propose that a cognate interaction of T helper cells with Yaa+ B cells, because of possible T cell recognition of a Yaa-related molecule expressed on Yaa+ B cells, may be responsible for the acceleration and/or induction of autoantibodies in BXSB/MpJ mice.

摘要

在BXSB/MpJ雄性小鼠中观察到的加速自身免疫综合征与Y染色体上一个尚未鉴定的突变基因有关,该基因被命名为Y染色体连锁自身免疫加速基因(Yaa)。为了研究Yaa基因加速和/或诱导自身抗体产生的机制,我们构建了双同源骨髓嵌合体,其中包含携带Yaa基因的自身免疫雄性小鼠以及缺乏该基因且Igh同种异型不同的非自身免疫雄性或雌性小鼠的B细胞。对Yaa +雄性 - 正常雌性(Yaa -)嵌合小鼠中总免疫球蛋白和抗DNA抗体的同种异型分析表明,自身免疫性Yaa +雄性小鼠B细胞的选择性激活是导致高球蛋白血症和自身抗体产生的原因。这种现象并非由于雌性T辅助细胞与雄性B细胞之间的抗HY相互作用,因为首先,在Yaa +雄性 - Yaa - 雄性嵌合小鼠中,Yaa + B细胞被选择性刺激产生自身抗体;其次,正常雄性和雌性嵌合体并未发展出自身免疫综合征。此外,Yaa(+)-Yaa - 嵌合体中的两个B细胞群体对异种抗原人IgG的反应相似,这排除了Yaa + B细胞的选择性激活可能是由于它们对T辅助信号反应过度的可能性。我们提出,T辅助细胞与Yaa + B细胞之间的同源相互作用,可能是由于T细胞识别Yaa + B细胞上表达的与Yaa相关的分子,可能是导致BXSB/MpJ小鼠自身抗体加速和/或诱导产生的原因。

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