Thy-1相关分子单克隆抗体鉴定未成熟小鼠胸腺细胞亚群。

Thymus Pub Date : 1994-01-01
X F Csar, J R Underwood, L C Zanon, M T Hearn
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引用次数: 0

摘要

在这项研究中,NMT-1单克隆抗体已被证明可以鉴定胸腺细胞表面分子(未成熟胸腺细胞标志物-1,ITM-1)表达在Balb/c、CBA、C57B1/6、129 Rej、a /J和AKR小鼠胸腺内86.2 - 90.8%的CD4+CD8+CD3-/lo/int细胞上。同样,使用nmt - 1mab对125碘标记胸腺细胞的细胞膜提取物进行免疫沉淀分析,从所有小鼠品系中鉴定出14.5和18.3 kDa分子。将这些免疫沉淀谱与大鼠IgG2b抗Thy-1抗体产生的免疫沉淀谱进行比较,表明NMT-1单抗识别Thy-1分子的一个亚种。与Thy-1分子不同,ITM-1分子在小鼠Balb/c、CBA、C57B1/6、129Rej、A/J和AKR株中的表达仅限于胸腺。在这些菌株的脾脏、淋巴结、骨髓、腹腔和外周血的淋巴样细胞上,ITM-1分子不表达。表型表征将ITM-1分子的表达与CD4+CD8+CD3-/lo/int胸腺细胞亚群相关联,表明NMT-1单克隆抗体识别不同发育相关的Thy-1糖型上的表位。ITM-1分子在分化胸腺细胞上的表达可能有助于进一步细分未成熟的胸腺亚群,特别是那些涉及阳性和阴性选择的亚群。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monoclonal antibody to a Thy-1 related/associated molecule identifies a subpopulation of immature mouse thymocytes.

In this study, NMT-1 mAbs have been shown to identify a thymocyte cell surface molecule (Immature Thymocyte Marker-1, ITM-1) expressed on 86.2 to 90.8% of CD4+CD8+CD3-/lo/int cells within the thymus of Balb/c, CBA, C57B1/6, 129 Rej, A/J and AKR mice. Similarly, immunoprecipitation analysis of cell membrane extracts from 125Iodine-labelled thymocytes, using NMT-1mAbs, identified 14.5 and 18.3 kDa molecules from all strains of mice examined. Comparison of these immunoprecipitation profiles with those produced by rat IgG2b anti-Thy-1 antibodies indicated that NMT-1 mAbs recognized a subspecies of the Thy-1 molecule. Unlike the Thy-1 molecule, the expression of ITM-1 molecules in Balb/c, CBA, C57B1/6, 129Rej, A/J and AKR strains of mice was restricted to the thymus. The ITM-1 molecule was not expressed on lymphoid cells within the spleen, lymph node, bone marrow, peritoneal cavity and peripheral blood in these strains. Phenotypic characterization associated the expression of ITM-1 molecule with the CD4+CD8+CD3-/lo/int thymocyte subpopulation indicating that NMT-1 mAbs recognize an epitope on a distinct developmentally-related Thy-1 glycoform. The expression of the ITM-1 molecule on differentiating thymocytes may prove useful in further subdividing immature thymic subpopulations, particularly those implicated in positive and negative selection.

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