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慢性 NK 细胞活化导致由 KLF2 缺陷介导的功能障碍、组织驻留样状态

英文原题:Chronic NK cell activation results in a dysfunctional, tissue resident-like state mediated by KLF2 deficiency.

查看英文原题

Chronic NK cell activation results in a dysfunctional, tissue resident-like state mediated by KLF2 deficiency.

PubMed 2025/12/18(内容时间) Blood Q1 · IF 23.9(JCR 2025)

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中文摘要

自然杀伤(NK)细胞的过继转移可使30%至50的难治性急性髓系白血病和淋巴瘤患者获得完全缓解。尽管血液嵌合现象发生,但实现功能性归巢至肿瘤部位而不发生耗竭一直难以实现。在慢性感染和肿瘤发生过程中,暴露于活化刺激会削弱NK细胞的效应活性。尽管已知这一点,但对于调控这种失调的机制以及这些不同的活化刺激是否使用不同途径下调效应免疫,人们知之甚少。

在本研究中,我们揭示慢性NK细胞活化受体(NKAR)刺激和慢性白细胞介素-15暴露赋予不同的失调模式,其中NKAR刺激诱导一种类似组织驻留的状态,类似于癌症患者中肿瘤浸润NK细胞的状态。通过功能缺失和功能获得研究,我们确定转录因子KLF2是NK细胞对慢性活化反应的主调控因子,并提供证据表明KLF2过表达促进NK细胞细胞毒性、细胞因子产生和趋化性,并抑制功能障碍、组织驻留样特征的发展。使用KLF2报告小鼠,我们显示在某些组织中,组织驻留NK细胞主要为KLF2-,而这些组织中的循环NK细胞绝大多数为KLF2+。

最后,使用混合骨髓嵌合体,我们证明NK细胞中条件性KLF2缺陷导致体内归巢改变和获得组织驻留样特征。总之,这些发现突出了NK细胞在长期活化过程中发生的深刻变化,并推进了我们对某些NK细胞疗法在恶性复发期间失败原因的理解。

展开英文摘要原文

Adoptive transfer of natural killer (NK) cells can induce complete remissions in 30% to 50% of patients with refractory acute myeloid leukemia and lymphoma. Although blood chimerism occurs, attaining functional homing to the site of tumor without exhaustion has been elusive. During chronic infections and tumorigenesis, exposure to activating stimuli weakens the effector activity of NK cells. Despite this knowledge, there is little known about the mechanisms that govern this dysregulation and whether these disparate activating stimuli use distinct pathways to downregulate effector immunity. In this study, we reveal that chronic NK cell activation receptor (NKAR) stimulation and chronic interleukin-15 exposure impart distinct modes of dysregulation, with NKAR stimulation inducing a tissue resident-like state that resembles that of tumor-infiltrating NK cells in patients with cancer.

Using loss- and gain-of-function studies, we identify the transcription factor KLF2 as a master regulator of the NK cell response to chronic activation and provide evidence that KLF2 overexpression promotes NK cell cytotoxicity, cytokine production, and chemotaxis and inhibits the development of dysfunctional, tissue resident-like features.

Using KLF2 reporter mice, we show that in certain tissues, tissue resident NK cells are predominantly KLF2-, whereas circulating NK cells in these tissues are overwhelmingly KLF2+. Lastly, using mixed bone marrow chimeras, we demonstrate that conditional KLF2 deficiency in NK cells leads to altered homing and the acquisition of tissue resident-like features in vivo.

Together, these findings highlight the profound changes NK cells undergo during prolonged activation and advance our understanding of how some NK cell therapies fail during malignant relapse.

论文信息

作者
Myers JA、Huang RS、Phung SK、Chacón JM、Bendzick L、Weis A、Shetty M、DePauw TA
单位
Masonic Cancer Center, University of Minnesota, Minneapolis, MN.United States
期刊
Blood2025 Dec 18
原文标识
PubMed 40857665 · DOI 10.1182/blood.2024027763