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条件性 RANKL 转基因小鼠胸腺的组织病理学和转录组表型。

Histopathologic and transcriptomic phenotypes of a conditional RANKL transgenic mouse thymus.

机构信息

Department of Molecular & Cellular Biology, United States.

Department of Pathology, Baylor College of Medicine, Houston, TX, United States.

出版信息

Cytokine. 2022 Dec;160:156022. doi: 10.1016/j.cyto.2022.156022. Epub 2022 Sep 11.

Abstract

Although conventional knockout and transgenic mouse models have significantly advanced our understanding of Receptor Activator of NF-κB Ligand (RANKL) signaling in intra-thymic crosstalk that establishes self-tolerance and later stages of lymphopoiesis, the unique advantages of conditional mouse transgenesis have yet to be explored. A main advantage of conditional transgenesis is the ability to express a transgene in a spatiotemporal restricted manner, enabling the induction (or de-induction) of transgene expression during predetermined stages of embryogenesis or during defined postnatal developmental or physiological states, such as puberty, adulthood, and pregnancy. Here, we describe the K5: RANKL bigenic mouse, in which transgene derived RANKL expression is induced by doxycycline and targeted to cytokeratin 5 positive medullary thymic epithelial cells (mTECs). Short-term doxycycline induction reveals that RANKL transgene expression is significantly induced in the thymic medulla and only in response to doxycycline. Prolonged doxycycline induction in the K5: RANKL bigenic results in a significantly enlarged thymus in which mTECs are hyperproliferative. Flow cytometry showed that there is a marked enrichment of CD4+ and CD8+ single positive thymocytes with a concomitant depletion of CD4+ CD8+ double positives. Furthermore, there is an increase in the number of FOXP3+ T regulatory (Treg) cells and Ulex Europaeus Agglutinin 1+ (UEA1+) mTECs. Transcriptomics revealed that a remarkable array of signals-cytokines, chemokines, growth factors, transcription factors, and morphogens-are governed by RANKL and drive in part the K5: RANKL thymic phenotype. Extended doxycycline administration to 6-weeks results in a K5: RANKL thymus that begins to display distinct histopathological features, such as medullary epithelial hyperplasia, extensive immune cell infiltration, and central tissue necrosis. As there are intense efforts to develop clinical approaches to restore thymic medullary function in the adult to treat immunopathological conditions in which immune cell function is compromised following cancer therapy or toxin exposure, an improved molecular understanding of RANKL's involvement in thymic medulla enlargement will be required. We believe the versatility of the conditional K5: RANKL mouse represents a tractable model system to assist in addressing this requirement as well as many other questions related to RANKL's role in thymic normal physiology and disease processes.

摘要

虽然传统的基因敲除和转基因小鼠模型极大地促进了我们对 NF-κB 配体受体激活剂(RANKL)信号在胸腺内相互作用中的理解,这种相互作用建立了自身耐受和以后的淋巴发生阶段,但条件性转基因小鼠的独特优势尚未得到探索。条件性转基因的一个主要优势是能够以时空限制的方式表达转基因,从而能够在胚胎发生的预定阶段或在青春期、成年期和妊娠期等定义的出生后发育或生理状态下诱导(或去诱导)转基因表达。在这里,我们描述了 K5:RANKL 双基因小鼠,其中转基因衍生的 RANKL 表达由强力霉素诱导,并靶向细胞角蛋白 5 阳性的髓质胸腺上皮细胞(mTEC)。短期强力霉素诱导表明,RANKL 转基因表达在胸腺髓质中显著诱导,并且仅对强力霉素有反应。在 K5:RANKL 双基因小鼠中延长强力霉素诱导会导致胸腺显著增大,其中 mTEC 呈过度增殖。流式细胞术显示,CD4+和 CD8+单阳性胸腺细胞明显富集,同时 CD4+CD8+双阳性细胞减少。此外,FOXP3+T 调节(Treg)细胞和 Ulex Europaeus Agglutinin 1+(UEA1+)mTEC 的数量增加。转录组学显示,一系列显著的信号-细胞因子、趋化因子、生长因子、转录因子和形态发生因子-受 RANKL 调控,并在一定程度上驱动 K5:RANKL 胸腺表型。延长强力霉素给药 6 周会导致 K5:RANKL 胸腺开始显示出明显的组织病理学特征,如髓质上皮增生、广泛的免疫细胞浸润和中央组织坏死。由于人们正在努力开发恢复成人胸腺髓质功能的临床方法来治疗癌症治疗或毒素暴露后免疫细胞功能受损的免疫病理状况,因此需要更深入地了解 RANKL 在胸腺髓质增大中的作用。我们认为,条件性 K5:RANKL 小鼠的多功能性代表了一种可行的模型系统,可以帮助解决这一要求以及许多其他与 RANKL 在胸腺正常生理和疾病过程中的作用相关的问题。

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