RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:HDAC6 orchestrates NK cell maturation and antitumor immunity.
HDAC6 orchestrates NK cell maturation and antitumor immunity.
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HDAC6 通过增强 IL-15/STAT5 通路被确定为 NK 细胞生物学的关键调节因子,并可能作为改善 NK 细胞功能的潜在靶点。
自然杀伤(NK)细胞作为宿主免疫监视的第一道防线,其成熟与效应功能受多种因素精细调控。尽管已有报道显示组蛋白去乙酰化酶(HDAC)抑制可损害 NK 细胞的活力及/或抗肿瘤效应,但具体参与其中的 HDAC 成员及其潜在机制仍不清楚。
我们分析了NK细胞活化过程中以及肿瘤浸润NK细胞中HDAC家族成员的表达。采用包括Hdac6敲除、敲低和过表达的遗传学方法,评估其在NK细胞增殖、成熟和效应功能中的作用。机制研究考察了蛋白乙酰化状态、分子伴侣活性以及IL-15-STAT5信号通路。通过NK细胞过继转移模型以及肿瘤环境中联合interleukin (IL)-15治疗,评估了其功能相关性。
HDAC6 是 NK 细胞活化时上调最显著的 HDAC 成员,而其表达在肿瘤浸润 NK 细胞中降低,并与患者生存不良相关。Hdac6 缺失显著损害了 NK 细胞的增殖、成熟和效应功能,而 Hdac6 过表达则表现出促进作用。机制上,Hdac6 缺失导致 HSP90 高度乙酰化,进而破坏其对磷酸化 STAT5 的分子伴侣活性,并阻断了 NK 细胞成熟和效应功能所必需的 IL-15 信号通路转导。在转化层面,HDAC6 过表达不仅明显改善了过继转移 NK 细胞的肿瘤抑制作用,还能与 IL-15 治疗协同,进一步增强 NK 细胞的抗肿瘤疗效。
Natural killer (NK) cells act as the host's first line of immunosurveillance, and their maturation and effector functions are finely regulated by multiple factors. Although histone deacetylase (HDAC) inhibition has been reported to impair NK cell viability and/or antitumor effects, the specific HDAC member involved and the underlying mechanisms remain unclear.
We analyzed the expression of HDAC family members during NK cell activation and in tumor-infiltrating NK cells. Genetic approaches, including Hdac6 knockout, knockdown, and overexpression, were used to evaluate its role in NK cell proliferation, maturation, and effector function. Mechanistic studies examined protein acetylation status, chaperone activity, and IL-15-STAT5 signaling. Functional relevance was assessed using NK cell adoptive transfer models and interleukin (IL)-15 combination treatment in tumor settings.
HDAC6 was the most significantly upregulated HDAC member on NK cell activation, whereas its expression was reduced in tumor-infiltrating NK cells and correlated with poor patient survival. Hdac6 deficiency markedly impaired NK cell proliferation, maturation, and effector functions, while Hdac6 overexpression showed a promoting effect. Mechanistically, loss of Hdac6 led to the hyperacetylation of HSP90, which in turn destroyed its chaperone activity for phosphorylated STAT5 and blocked the transduction of the IL-15 signaling pathway indispensable for NK cell maturation and effector function. Translationally, HDAC6 overexpression not only obviously improved tumor suppression of transferred NK cells, but also synergized with IL-15 treatment to further boost NK cell antitumor efficacy.
HDAC6 was identified as a critical regulator of NK cell biology through strengthening the IL-15/STAT5 pathway and may serve as a potential target for improving NK cell function.
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