PO.CL05.08 · 临床研究
靶向PRMT7通过促进MHC-I表达激发抗AML免疫
Targeting PRMT7 elicits anti-AML immunity by promoting MHC-I expression
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
蛋白质精氨酸甲基化调控多种细胞功能,包括RNA剪接、翻译和DNA损伤修复。蛋白质精氨酸N-甲基转移酶(PRMT)失调常见于恶性造血。PRMT7是唯一的III型PRMT,催化单甲基精氨酸(MMA)修饰,但其在白血病发生中的作用尚不明确。对既往一项全基因组CRISPR/Cas9筛选的重新分析显示,PRMT7是MHC-I的关键负调控因子,这促使我们探究抑制PRMT7是否可能促进抗AML免疫。为评估PRMT7在MHC-I呈递中的潜在功能,我们在包括THP-1和Molm13在内的人AML细胞系中敲除了PRMT7并评估了MHC-I水平。相较于对照,PRMT7 KO在两种细胞系中均显著上调了MHC-I表达。我们还观察到,在离体条件下用相对较低浓度的靶向降解剂(PRMT7 PROTAC)处理后,两种细胞系中MHC-I也上调,而相同剂量的任一化合物均不影响正常造血干/祖(CD34+)细胞。为在MLL-AF9小鼠模型中确认MHC-I动态变化,我们从造血特异性Prmt7 KO小鼠(Prmt7 fl/fl;Vav1-Cre)构建了Prmt7 KO MLL-MA9小鼠模型,观察到相对于WT MLL-AF9细胞,H-2Kb表达上调2倍。鉴于MHC-I在CD8+ T细胞活化中的关键作用,我们接下来探究PRMT7缺失是否会增强CD8+ T细胞应答。我们评估了PRMT7-KO/-WT THP-1或Molm13细胞与来自健康供者的活化CD8+ T细胞共培养时的人T细胞杀伤效应。共培养后,我们发现PRMT7 KO AML细胞对人T细胞介导的杀伤更为敏感。与此一致,在MA9与同基因活性CD8+ T细胞的共培养模型中,PRMT7 KO小鼠AML细胞对小鼠T细胞介导的杀伤更为敏感。此外,在PRMT7 PROTAC预处理后,在THP1细胞与CD8+ T细胞的共培养系统中,THP1细胞对人T细胞介导的杀伤更为敏感。接下来,为评估PRMT7缺失是否损害正常造血,我们通过Cytek全光谱流式细胞术分析了Prmt7 KO(Vav1-Cre+)与Prmt7-WT(Vav1-Cre-)小鼠的骨髓总细胞数和谱系频率。虽然骨髓总细胞数相当,但PRMT7 KO略微增加了CD4⁺或CD8⁺ T细胞的数量。这些结果表明,尽管PRMT7功能对正常造血可能是可有可无的,但PRMT7缺失可能对T细胞增殖或活化产生适度影响。在未来的研究中,我们将确认PRMT7抑制是否在体内促进抗肿瘤T细胞活性,以及其潜在机制是否通过MHC-I调控实现。总体而言,我们已证明PRMT7耗竭或药理学抑制部分通过上调MHC-I来增强T细胞功能。这些发现提示,将PRMT7抑制剂与免疫疗法联合可能是克服AML免疫冷特性的一种有前景的策略。
查看英文原文 English abstract
Protein arginine methylation regulates several cellular functions, including RNA splicing, translation and DNA damage repair. Protein arginine N-methyltransferase (PRMT) dysregulation is often seen in malignant hematopoiesis. PRMT7, the only type III PRMT, catalyzes monomethyl arginine (MMA) modification, but its role in leukemogenesis is elusive. Re-analysis of a previous genome-wide CRISPR/Cas9 screen revealed PRMT7 to be a crucial negative-regulator of MHC-I, prompting us to ask whether PRMT7 inhibition might promote anti-AML immunity. To assess the potential PRMT7 function in MHC-I presenting, we knocked out PRMT7 in human AML lines including THP-1 and Molm13 and assessed MHC-I levels. Relative to controls, PRMT7 KO remarkably upregulated MHC-I expression in both lines. We also observed MHC-I upregulation was also observed in both cell lines after treatment with the targeted degrader (PRMT7 PROTAC) ex-vivo at relatively low concentrations, while the same dose of either compound spared normal hematopoietic stem/progenitor (CD34 + ) cells. To confirm MHC-I dynamics in an MLL-AF9 mouse model, we generated a Prmt7 KO MLL-MA9 mouse model from hematopoietic-specific Prmt7 KO mice (Prmt7 fl/fl ;Vav1-Cre) and observed 2-fold upregulation of H-2Kb expression relative to WT MLL-AF9 cells.Given the critical role of MHC-I in CD8 + T cell activation, we next asked whether PRMT7 deletion would enhance CD8 + T cell responses. We evaluated human T cell killing effects in PRMT7-KO/-WT THP-1 or Molm13 cells cocultured with activated CD8 + T cells derived from healthy donors. Post-coculture, we found that PRMT7 KO AML cells were more susceptible to human T cell-mediated killing. In agreement, PRMT7 KO murine AML cells were more sensitive to mouse T cell-mediated killing using a coculture model of MA9 and syngeneic active CD8 + T cells. Moreover, following PRMT7 PROTAC pretreatment, THP1 cells were more sensitive to human T cells mediated killing in a coculture system of THP1 cells and CD8 + T cells.Next, to assess whether PRMT7 deletion impairs normal hematopoiesis, we analyzed total bone marrow cellularity and lineage frequency in Prmt7 KO (Vav1-Cre+) versus Prmt7-WT (Vav1-Cre-) mice via Cytek full-spectrum flow cytometry. While total BM cellularity was comparable, PRMT7 KO slightly increased the number of CD4⁺ or CD8⁺
T cells. These results suggest that although PRMT7 function is likely dispensable for normal hematopoiesis, PRMT7 loss may have a modest effect on T cell proliferation or activation. In future studies, we will confirm whether PRMT7 inhibition promotes anti-tumor T cell activity in-vivo, and whether the underlying mechanism is via MHC-I regulation. Overall, we have shown that PRMT7 depletion or pharmacological inhibition enhances T cell function in part by upregulating MHC-I. These findings suggest that combining PRMT7 inhibitors with immunotherapy could be a promising strategy to overcome AML's immune-cold properties.
利益披露 Disclosure
S. Ge, None..
K. Luo, None..
L. Zhang, None..
M. Liu, None..
X. He, None..
G. Wu, None..
Y. Li, None..
Y. P. Umesh, None..
H. Dong, None..
S. Xue, None..
J. Jin, None.