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Sox13 和 M2 样白血病相关巨噬细胞有助于内源性 IL-34 引起急性髓系白血病的加速进展。

Sox13 and M2-like leukemia-associated macrophages contribute to endogenous IL-34 caused accelerated progression of acute myeloid leukemia.

机构信息

State Key Laboratory of Experimental Hematology, National Clinical Research Center for Blood Diseases, Haihe Laboratory of Cell Ecosystem, Institute of Hematology & Blood Diseases Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, 288 Nanjing Road, Tianjin, 300020, China.

Tianjin Institutes of Health Science, Tianjin, 301600, China.

出版信息

Cell Death Dis. 2023 May 6;14(5):308. doi: 10.1038/s41419-023-05822-z.

Abstract

Interleukin 34 (IL-34) mainly plays physiologic and pathologic roles through the sophisticated multi-ligand signaling system, macrophage colony-stimulating factor (M-CSF, CSF-1)/IL-34-CSF-1R axis, which exhibits functional redundancy, tissue-restriction and diversity. This axis is vital for the survival, differentiation and function of monocytic lineage cells and plays pathologic roles in a broad range of diseases. However, the role of IL-34 in leukemia has not been established. Here MLL-AF9 induced mouse acute myeloid leukemia (AML) model overexpressing IL-34 (MA9-IL-34) was used to explore its role in AML. MA9-IL-34 mice exhibited accelerated disease progression and short survival time with significant subcutaneous infiltration of AML cells. MA9-IL-34 cells showed increased proliferation. In vitro colony forming assays and limiting dilution transplantation experiments demonstrated that MA9-IL-34 cells had elevated leukemia stem cell (LSC) levels. Gene expression microarray analysis revealed a panel of differential expressed genes including Sex-determining region Y (SRY)-box 13 (Sox13). Furthermore, a positive correlation between the expressions of IL-34 and Sox13 was detected human datasets. Knockdown of Sox13 rescued the enhanced proliferation, high LSC level and subcutaneous infiltration in MA9-IL-34 cells. Moreover, more leukemia-associated macrophages (LAMs) were detected in MA9-IL-34 microenvironment. Additionally, those LAMs showed M2-like phenotype since they expressed high level of M2-associated genes and had attenuated phagocytic potential, suggesting that LAMs should also contribute to IL-34 caused adverse phenotypes. Therefore, our findings uncover the intrinsic and microenvironmental mechanisms of IL-34 in AML and broadens the knowledge of M-CSF/IL-34-CSF-1R axis in malignancies.

摘要

白细胞介素 34 (IL-34) 主要通过复杂的多配体信号系统、巨噬细胞集落刺激因子 (M-CSF,CSF-1)/IL-34-CSF-1R 轴发挥生理和病理作用,该轴具有功能冗余、组织限制和多样性。该轴对于单核细胞谱系细胞的存活、分化和功能至关重要,并在广泛的疾病中发挥病理作用。然而,IL-34 在白血病中的作用尚未确定。在这里,我们使用 MLL-AF9 诱导的小鼠急性髓系白血病 (AML) 模型过表达 IL-34 (MA9-IL-34) 来探索其在 AML 中的作用。MA9-IL-34 小鼠表现出疾病进展加速和生存时间缩短,AML 细胞明显皮下浸润。MA9-IL-34 细胞表现出增殖增加。体外集落形成实验和有限稀释移植实验表明,MA9-IL-34 细胞具有更高的白血病干细胞 (LSC) 水平。基因表达微阵列分析显示了一组差异表达基因,包括性别决定区 Y (SRY)-框 13 (Sox13)。此外,在人类数据集检测到 IL-34 和 Sox13 的表达之间存在正相关。Sox13 的敲低挽救了 MA9-IL-34 细胞中增强的增殖、高 LSC 水平和皮下浸润。此外,在 MA9-IL-34 微环境中检测到更多的白血病相关巨噬细胞 (LAMs)。此外,这些 LAMs 表现出 M2 样表型,因为它们表达高水平的 M2 相关基因,并且吞噬能力减弱,这表明 LAMs 也应该有助于 IL-34 引起的不良表型。因此,我们的研究结果揭示了 IL-34 在 AML 中的内在和微环境机制,并拓宽了 M-CSF/IL-34-CSF-1R 轴在恶性肿瘤中的知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb38/10164149/909d74e97f12/41419_2023_5822_Fig1_HTML.jpg

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