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NKG2D 配体的上调会损害范可尼贫血症患者造血干细胞的功能。

Upregulation of NKG2D ligands impairs hematopoietic stem cell function in Fanconi anemia.

机构信息

Division of Innovative Therapies, CIEMAT and Advanced Therapies Unit, IIS-Fundación Jimenez Diaz and Autónoma University, Madrid, Spain.

Biomedical Center for Research on Rare Diseases (CIBERER), Madrid, Spain.

出版信息

J Clin Invest. 2022 Aug 1;132(15). doi: 10.1172/JCI142842.

Abstract

Fanconi anemia (FA) is the most prevalent inherited bone marrow failure (BMF) syndrome. Nevertheless, the pathophysiological mechanisms of BMF in FA have not been fully elucidated. Since FA cells are defective in DNA repair, we hypothesized that FA hematopoietic stem and progenitor cells (HSPCs) might express DNA damage-associated stress molecules such as natural killer group 2 member D ligands (NKG2D-Ls). These ligands could then interact with the activating NKG2D receptor expressed in cytotoxic NK or CD8+ T cells, which may result in progressive HSPC depletion. Our results indeed demonstrated upregulated levels of NKG2D-Ls in cultured FA fibroblasts and T cells, and these levels were further exacerbated by mitomycin C or formaldehyde. Notably, a high proportion of BM CD34+ HSPCs from patients with FA also expressed increased levels of NKG2D-Ls, which correlated inversely with the percentage of CD34+ cells in BM. Remarkably, the reduced clonogenic potential characteristic of FA HSPCs was improved by blocking NKG2D-NKG2D-L interactions. Moreover, the in vivo blockage of these interactions in a BMF FA mouse model ameliorated the anemia in these animals. Our study demonstrates the involvement of NKG2D-NKG2D-L interactions in FA HSPC functionality, suggesting an unexpected role of the immune system in the progressive BMF that is characteristic of FA.

摘要

范可尼贫血(FA)是最常见的遗传性骨髓衰竭(BMF)综合征。然而,FA 中 BMF 的病理生理机制尚未完全阐明。由于 FA 细胞在 DNA 修复方面存在缺陷,我们假设 FA 造血干细胞和祖细胞(HSPCs)可能表达与 DNA 损伤相关的应激分子,如自然杀伤细胞 2 组成员 D 配体(NKG2D-Ls)。这些配体可以与细胞毒性 NK 或 CD8+T 细胞中表达的激活型 NKG2D 受体相互作用,这可能导致 HSPC 逐渐耗竭。我们的研究结果确实表明,在培养的 FA 成纤维细胞和 T 细胞中 NKG2D-Ls 的表达水平上调,并且米托蒽醌或甲醛进一步加剧了这种上调。值得注意的是,FA 患者 BM 中的 CD34+HSPCs 中也有相当大比例表达了更高水平的 NKG2D-Ls,这与 BM 中 CD34+细胞的百分比呈负相关。值得注意的是,通过阻断 NKG2D-NKG2D-L 相互作用,FA HSPCs 的克隆形成潜力降低的特征得到改善。此外,在 BMF FA 小鼠模型中阻断这些相互作用可以改善这些动物的贫血。我们的研究表明 NKG2D-NKG2D-L 相互作用参与了 FA HSPC 的功能,这表明免疫系统在 FA 特征性的进行性 BMF 中发挥了意想不到的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04c1/9337828/2b1f6dd7e30d/jci-132-142842-g001.jpg

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