School of Natural Sciences, University of California at Merced, Merced, California, United States of America.
PLoS One. 2010 Oct 20;5(10):e13528. doi: 10.1371/journal.pone.0013528.
Cellular interactions between thymocytes and thymic stromal cells are critical for normal T cell development. Thymic epithelial cells (TECs) are important stromal niche cells that provide essential growth factors, cytokines, and present self-antigens to developing thymocytes. The identification of genes that mediate cellular crosstalk in the thymus is ongoing. One candidate gene, Adam17, encodes a metalloprotease that functions by cleaving the ectodomain of several transmembrane proteins and regulates various developmental processes. In conventional Adam17 knockout mice, a non-cell autonomous role for ADAM17 in adult T cell development was reported, which strongly suggested that expression of ADAM17 in TECs was required for normal T cell development. However, knockdown of Adam17 results in multisystem developmental defects and perinatal lethality, which has made study of the role of Adam17 in specific cell types difficult. Here, we examined T cell and thymic epithelial cell development using a conditional knockout approach.
METHODOLOGY/PRINCIPAL FINDINGS: We generated an Adam17 conditional knockout mouse in which floxed Adam17 is deleted specifically in TECs by Cre recombinase under the control of the Foxn1 promoter. Normal T cell lineage choice and development through the canonical αβ T cell stages was observed. Interestingly, Adam17 deficiency in TECs resulted in reduced expression of the transcription factor Aire. However, no alterations in the patterns of TEC phenotypic marker expression and thymus morphology were noted.
CONCLUSIONS/SIGNIFICANCE: In contrast to expectation, our data clearly shows that absence of Adam17 in TECs is dispensable for normal T cell development. Differentiation of TECs is also unaffected by loss of Adam17 based on phenotypic markers. Surprisingly, we have uncovered a novel genetic link between Adam17and Aire expression in vivo. The cell type in which ADAM17 mediates its non-cell autonomous impact and the mechanisms by which it regulates intrathymic T cell development remain to be identified.
胸腺细胞和胸腺基质细胞之间的细胞相互作用对正常 T 细胞发育至关重要。胸腺上皮细胞(TECs)是重要的基质生态位细胞,它们为发育中的胸腺细胞提供必需的生长因子、细胞因子和自身抗原。目前正在鉴定介导胸腺细胞细胞间通讯的基因。候选基因之一 Adam17 编码一种金属蛋白酶,通过切割几种跨膜蛋白的细胞外结构域来发挥作用,并调节各种发育过程。在传统的 Adam17 敲除小鼠中,报道了 ADAM17 在成体 T 细胞发育中的非细胞自主作用,这强烈表明 TEC 中 ADAM17 的表达是正常 T 细胞发育所必需的。然而,Adam17 的敲低会导致多系统发育缺陷和围产期致死,这使得研究 Adam17 在特定细胞类型中的作用变得困难。在这里,我们使用条件性敲除方法研究了 T 细胞和胸腺上皮细胞的发育。
方法/主要发现:我们通过 Foxn1 启动子控制的 Cre 重组酶在 TEC 中特异性缺失 floxed Adam17,生成了 Adam17 条件性敲除小鼠。观察到正常的 T 细胞谱系选择和通过经典的αβ T 细胞阶段的发育。有趣的是,TEC 中 Adam17 的缺失导致转录因子 Aire 的表达减少。然而,没有注意到 TEC 表型标记表达和胸腺形态的模式发生改变。
结论/意义:与预期相反,我们的数据清楚地表明,TEC 中缺乏 Adam17 对于正常 T 细胞发育是可有可无的。根据表型标记,TEC 中 Adam17 的缺失也不会影响 TEC 的分化。令人惊讶的是,我们在体内发现了 Adam17 和 Aire 表达之间的新遗传联系。ADAM17 在体内介导其非细胞自主影响的细胞类型以及它调节胸腺内 T 细胞发育的机制仍有待确定。