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布鲁顿酪氨酸激酶缺陷的未成熟B细胞中的细胞成熟缺陷因前体B细胞受体的过早表达而加剧,并因受体编辑而减轻。

Cellular maturation defects in Bruton's tyrosine kinase-deficient immature B cells are amplified by premature B cell receptor expression and reduced by receptor editing.

作者信息

Middendorp Sabine, Hendriks Rudolf W

机构信息

Department of Immunology, Erasmus MC Rotterdam, Rotterdam, The Netherlands.

出版信息

J Immunol. 2004 Feb 1;172(3):1371-9. doi: 10.4049/jimmunol.172.3.1371.

Abstract

In the mouse, Bruton's tyrosine kinase (Btk) is essential for efficient developmental progression of CD43(+)CD2(-) large cycling into CD43(-)CD2(+) small resting pre-B cells in the bone marrow and of IgM(high) transitional type 2 B cells into IgM(low) mature B cells in the spleen. In this study, we show that the impaired induction of cell surface changes in Btk-deficient pre-B cells was still noticeable in kappa(+) immature B cells, but was largely corrected in lambda(+) immature B cells. As lambda gene rearrangements are programmed to follow kappa rearrangements and lambda expression is associated with receptor editing, we hypothesized that the transit time through the pre-B cell compartment or receptor editing may affect the extent of the cellular maturation defects in Btk-deficient B cells. To address this issue, we used 3-83 mu delta transgenic mice, which prematurely express a complete B cell receptor and therefore manifest accelerated B cell development. In Btk-deficient 3-83 mu delta mice, the IgM(+) B cells in the bone marrow exhibited a very immature phenotype (pre-BCR(+)CD43(+)CD2(-)) and were arrested at the transitional type 1 B cell stage upon arrival in the spleen. However, these cellular maturation defects were largely restored when Btk-deficient 3-83 mu delta B cells were on a centrally deleting background and therefore targeted for receptor editing. Providing an extended time window for developing B cells by enforced expression of the antiapoptotic gene Bcl-2 did not alter the Btk dependence of their cellular maturation. We conclude that premature B cell receptor expression amplifies the cellular maturation defects in Btk-deficient B cells, while extensive receptor editing reduces these defects.

摘要

在小鼠中,布鲁顿酪氨酸激酶(Btk)对于骨髓中CD43(+)CD2(-)大循环细胞高效发育为CD43(-)CD2(+)小静止前B细胞以及脾脏中IgM(高)过渡2型B细胞高效发育为IgM(低)成熟B细胞至关重要。在本研究中,我们发现,Btk缺陷型前B细胞表面变化诱导受损在κ(+)未成熟B细胞中仍很明显,但在λ(+)未成熟B细胞中则基本得到纠正。由于λ基因重排被设定为跟随κ重排,且λ表达与受体编辑相关,我们推测,在前B细胞区室的转运时间或受体编辑可能会影响Btk缺陷型B细胞中细胞成熟缺陷的程度。为解决这一问题,我们使用了3-83μδ转基因小鼠,其过早表达完整的B细胞受体,因此表现出加速的B细胞发育。在Btk缺陷的3-83μδ小鼠中,骨髓中的IgM(+) B细胞表现出非常不成熟的表型(前BCR(+)CD43(+)CD2(-)),并在到达脾脏时停滞在过渡1型B细胞阶段。然而,当Btk缺陷的3-83μδ B细胞处于中央删除背景并因此进行受体编辑时,这些细胞成熟缺陷在很大程度上得到了恢复。通过强制表达抗凋亡基因Bcl-2为发育中的B细胞提供延长的时间窗口,并未改变其细胞成熟对Btk的依赖性。我们得出结论,过早的B细胞受体表达会放大Btk缺陷型B细胞中的细胞成熟缺陷,而广泛的受体编辑则会减少这些缺陷。

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