首页> 外文期刊>Molecular and Cellular Biology >Mice lacking c-fos have normal hematopoietic stem cells but exhibit altered B-cell differentiation due to an impaired bone marrow environment.
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Mice lacking c-fos have normal hematopoietic stem cells but exhibit altered B-cell differentiation due to an impaired bone marrow environment.

机译:缺乏c-fos的小鼠具有正常的造血干细胞,但由于骨髓环境受损,表现出改变的B细胞分化。

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Mice lacking c-fos develop severe osteopetrosis with deficiencies in bone remodeling and exhibit extramedullary hematopoiesis, thymic atrophy, and altered B-cell development. In this study, we have used these mice to characterize in detail the developmental potential of hematopoietic stem cells lacking c-fos and to analyze how the lymphoid differentiation is altered. In c-fos -/- mice, B-cell numbers are reduced in the spleen, lymph nodes, and the peripheral blood as a result of a marked reduction (> 90%) in the number of clonogenic B-cell precursors. In contrast, the number and lineage distribution of myeloid progenitor cells are not affected. The thymic defects observed in a large number of these mice correlate with their health status, suggesting that this may be an indirect effect of the c-fos mutation. In vitro differentiation and bone marrow reconstitution experiments demonstrated that hematopoietic stem cells lacking c-fos can give rise to all mature myeloid as well as lymphoid cells, suggesting that the observed B lymphopenia in the mutant mice is due to an altered environment. Transplantation of wild-type bone marrow cells into newborn mutant mice resulted in the establishment of a bone marrow space and subsequent correction of the B-cell defect. These results demonstrate that hematopoietic stem cells lacking Fos have full developmental potential and that the observed defect in B-cell development is most likely due to the impaired bone marrow environment as a consequence of osteopetrosis.
机译:缺乏c-fos的小鼠会发展成严重的骨质疏松症,但骨质重建不足,并表现出髓外造血,胸腺萎缩和B细胞发育改变。在这项研究中,我们已经使用这些小鼠来详细表征缺乏c-fos的造血干细胞的发育潜力,并分析淋巴样分化的方式。在c-fos-/-小鼠中,由于克隆形成的B细胞前体数量明显减少(> 90%),脾,淋巴结和外周血中的B细胞数量减少。相反,髓系祖细胞的数目和谱系分布不受影响。在大量这些小鼠中观察到的胸腺缺陷与它们的健康状况相关,这表明这可能是c-fos突变的间接作用。体外分化和骨髓重建实验表明,缺乏c-fos的造血干细胞可引起所有成熟的骨髓以及淋巴样细胞,这表明突变小鼠中观察到的B淋巴细胞减少症是由于环境的改变。将野生型骨髓细胞移植到新生突变小鼠中导致建立了骨髓空间并随后纠正了B细胞缺陷。这些结果表明,缺乏Fos的造血干细胞具有完全的发育潜力,并且观察到的B细胞发育缺陷最有可能是由于骨质疏松导致的骨髓环境受损。

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