新西兰黑(NZB)小鼠骨髓中pre-pro B细胞频率增加:对B细胞分化发育障碍的影响

Zhe-Xiong Lian, Hiroto Kita, Tomoyuki Okada, Tom Hsu, Leonard D Shultz, Kenneth Dorshkind, Aftab A Ansari, Susumu Ikehara, Mitsuru Naiki, M Eric Gershwin
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引用次数: 13

摘要

前b细胞(Hardy分数D)和前b细胞(Hardy分数B-C)的减少已被描述与小鼠狼疮有关。最近对B细胞群体的研究,基于B细胞分化标记物的评估,现在允许枚举和富集其他阶段特异性前体细胞。在这项研究中,我们报告了新西兰黑(NZB)和对照小鼠株中B细胞谱系亚群的个体发育的详细分析。我们的数据表明,NZB小鼠的B细胞发育在A Pre-Pro B细胞阶段部分受阻。这种在Pre-Pro B细胞阶段的阻滞是继发于寿命延长和对自发凋亡的更大抵抗。此外,编码关键B细胞发育转录因子BSAP的基因在NZB小鼠Pre-Pro B细胞阶段表达减少。这种损伤可能会影响B细胞的后期发育,从而导致B细胞受体成分Ig α (mb-1)的下调。此外,在NZB小鼠Pre-Pro B细胞中,Rug2、lambda5和Ig β (B29)基因的表达水平也降低。Pre-Pro B细胞群中前体B细胞频率的降低发生在B细胞分化的最原始阶段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Increased frequency of pre-pro B cells in the bone marrow of New Zealand Black (NZB) mice: implications for a developmental block in B cell differentiation.

Reductions in populations of both Pre-B cell (Hardy fractions D) and Pro-B cells (Hardy fractions B-C) have been described in association with murine lupus. Recent studies of B cell populations, based on evaluation of B cell differentiation markers, now allow the enumeration and enrichment of other stage specific precursor cells. In this study we report detailed analysis of the ontogeny of B cell lineage subsets in New Zealand black (NZB) and control strains of mice. Our data suggest that B cell development in NZB mice is partially arrested at the fraction A Pre-Pro B cell stage. This arrest at the Pre-Pro B cell stage is secondary to prolonged lifespan and greater resistance to spontaneous apoptosis. In addition, expression of the gene encoding the critical B cell development transcription factor BSAP is reduced in the Pre-Pro B cell stage in NZB mice. This impairment may influence subsequent B cell development to later stages, and thereby accounts for the down-regulation of the B cell receptor component Ig alpha (mb-1). Furthermore, levels of expression of the Rug2, lambda5 and Ig beta (B29) genes are also reduced in Pre-Pro B cells of NZB mice. The decreased frequency of precursor B cells in the Pre-Pro B cell population occurs at the most primitive stage of B cell differentiation.

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