首页> 外文OA文献 >Defective lymphopoiesis in bone marrow of motheaten (me/me) and viable motheaten (mev/mev) mutant mice. I. Analysis of development of prothymocytes, early B lineage cells, and terminal deoxynucleotidyl transferase-positive cells
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Defective lymphopoiesis in bone marrow of motheaten (me/me) and viable motheaten (mev/mev) mutant mice. I. Analysis of development of prothymocytes, early B lineage cells, and terminal deoxynucleotidyl transferase-positive cells

机译:motheaten(me / me)和存活的motheaten(mev / mev)突变小鼠的骨髓中有缺陷的淋巴细胞生成。 I.胸腺细胞,早期B谱系细胞和末端脱氧核苷酸转移酶阳性细胞的发育分析

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摘要

This study identifies defects in the early stages of lymphopoiesis that may contribute to the abnormalities in the development and/or function of peripheral T and B lymphocytes in mice homozygous for the motheaten (me/me) and viable motheaten (mev/mev) mutations. The results indicate that in me/me and mev/mev mice prothymocytes in bone marrow are present in essentially normal numbers, as determined by intrathymic injection, but apparently lack the ability to home effectively to the thymus, as determined by intravenous transfer; early B lineage cells in bone marrow, identified by the B220 antigen, are markedly depleted, including immature B cells (sIg+), pre-B cells (cIg+, sIg-), and pro-B cells (B220+, cIg-, sIg-); TdT+ bone marrow cells, especially a subset that expresses the B220 B lineage antigen, are markedly depleted by two weeks of age; normal numbers of TdT+ thymocytes are present during the first 3 wk of postnatal life, but rapidly decrease thereafter. The results further indicate that neither the defective thymus homing capacity of prothymocytes nor the deficiency of TdT+ bone marrow cells is due to autoantibodies. The possible relationship of the defective development of lymphoid precursor cells to the premature onset of thymic involution and to the abnormalities of peripheral T and B lymphocytes in me/me and mev/mev mice is discussed; as are the results of in vitro studies (presented in a companion paper), which suggest that a primary defect in the stromal microenvironment of the bone marrow is responsible for the abnormal development of the lymphoid precursor cells.
机译:这项研究确定了在淋巴细胞生成早期阶段的缺陷,这些缺陷可能是由于小鼠中的motheaten(me / me)和可行的motheaten(mev / mev)突变而纯合的小鼠外周T和B淋巴细胞的发育和/或功能异常。结果表明,在me / me和mev / mev小鼠中,通过胸腺内注射确定,骨髓中的胸腺淋巴细胞以基本正常的数量存在,但通过静脉内转移确定,显然缺乏有效归巢于胸腺的能力。由B220抗原鉴定出的骨髓中早期的B谱系细胞被显着耗尽,包括未成熟的B细胞(sIg +),前B细胞(cIg +,sIg-)和pro-B细胞(B220 +,cIg-,sIg- ); TdT +骨髓细胞,特别是表达B220 B谱系抗原的亚群,在两周大时已明显耗竭。正常的TdT +胸腺细胞数量在出生后前3周内存在,但此后迅速下降。结果还表明,前胸腺细胞的胸腺归巢能力缺陷或TdT +骨髓细胞缺乏都不是由于自身抗体引起的。讨论了在me / me和mev / mev小鼠中,淋巴样前体细胞发育不良与胸腺退化过早发作以及外周T和B淋巴细胞异常的可能关系;体外研究的结果(在同篇论文中提出)也表明,骨髓基质微环境的主要缺陷是淋巴样前体细胞异常发育的原因。

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