Kleemann Johannes, Steinhorst Katja, König Veronika, Zöller Nadja, Cinatl Jindrich, Özistanbullu Deniz, Kaufmann Roland, Meissner Markus, Kippenberger Stefan
Department of Dermatology, Venereology and Allergy, University Hospital, Johann Wolfgang Goethe University, D-60590 Frankfurt am Main, Germany.
Institute for Medical Virology, University Hospital, Johann Wolfgang Goethe University, D-60590 Frankfurt am Main, Germany.
Cancers (Basel). 2022 Sep 27;14(19):4698. doi: 10.3390/cancers14194698.
The clinical application of immune checkpoint inhibitors represents a breakthrough progress in the treatment of metastasized melanoma and other tumor entities. In the present study, it was hypothesized that oligonucleotides (ODNs), known as modulators of the immune response, have an impact on the endogenous expression of checkpoint molecules, namely PD-L1 and PD-L2 (PD-L1/2). IFNγ-stimulated melanoma cells (A375, SK-Mel-28) were treated with different synthetically manufactured oligonucleotides which differed in sequence, length and backbone composition. It was found that a variety of different ODN sequences significantly suppressed PD-L1/2 expression. This effect was dependent on length and phosphorothioate (PTO) backbone. In particular, a sequence containing solely guanines (nCpG-6-PTO) was highly effective in downregulating PD-L1/2 at the protein, mRNA and promoter levels. Mechanistically, we gave evidence that ODNs with G-quartet-forming motifs suppress the interferon signaling axis (JAK/STAT/IRF1). Our findings identify a subset of ODNs as interesting pharmacological compounds that could expand the arsenal of targeted therapies to combat the immunological escape of tumor cells.
免疫检查点抑制剂的临床应用代表了转移性黑色素瘤和其他肿瘤实体治疗方面的突破性进展。在本研究中,我们假设作为免疫反应调节剂的寡核苷酸(ODN)对检查点分子,即程序性死亡配体1和程序性死亡配体2(PD-L1/2)的内源性表达有影响。用不同的合成寡核苷酸处理经干扰素γ刺激的黑色素瘤细胞(A375、SK-Mel-28),这些寡核苷酸在序列、长度和骨架组成上有所不同。结果发现,多种不同的ODN序列显著抑制PD-L1/2的表达。这种效应取决于长度和硫代磷酸酯(PTO)骨架。特别是,一个仅含鸟嘌呤的序列(nCpG-6-PTO)在蛋白质、mRNA和启动子水平上对下调PD-L1/2非常有效。从机制上讲,我们证明具有G-四联体形成基序的ODN抑制干扰素信号轴(JAK/STAT/IRF1)。我们的研究结果确定了一部分ODN是有趣的药理化合物,可扩大靶向治疗的手段,以对抗肿瘤细胞的免疫逃逸。