Institute of Medical Immunology, Martin Luther University Halle-Wittenberg, Halle, Germany.
Institute of Pathology, Martin Luther University Halle-Wittenberg, Halle, Germany.
Oncoimmunology. 2022 Apr 28;11(1):2069214. doi: 10.1080/2162402X.2022.2069214. eCollection 2022.
The extracellular matrix component biglycan (BGN) plays an essential role in various physiological and pathophysiological processes. A deficient BGN expression associated with reduced immunogenicity was found in HER-2/neu-overexpressing cells. To determine whether BGN is suppressed by oncogene-driven regulatory networks, the expression and function of BGN was analyzed in murine and human BGN/BGN K-RAS-transformed model systems as well as in different patients' datasets of colorectal carcinoma (CRC) lesions. K-RAS-mutated CRC tissues expressed low BGN mRNA and protein levels when compared to normal colon epithelial cells, which was associated with a reduced patients' survival. Transfection of BGN in murine and human BGN K-RAS-expressing cells resulted in a reduced growth and migration of BGN vs BGN K-RAS cells. In addition, increased MHC class I surface antigens as a consequence of an enhanced antigen processing machinery component expression was found upon restoration of BGN, which was confirmed by RNA-sequencing of BGN vs. BGN K-RAS models. Furthermore, a reduced tumor formation of BGN versus BGN K-RAS-transformed fibroblasts associated with an enhanced MHC class I expression and an increased frequency of tumor-infiltrating lymphocytes in tumor lesions was found. Our data provide for the first time an inverse link between BGN and K-RAS expression in murine and human K-RAS-overexpressing models and CRC lesions associated with altered growth properties, reduced immunogenicity and worse patients' outcome. Therefore, reversion of BGN might be a novel therapeutic option for K-RAS-associated malignancies.
细胞外基质成分 biglycan(BGN)在各种生理和病理生理过程中发挥着重要作用。在过表达 HER-2/neu 的细胞中,发现 BGN 表达不足与免疫原性降低有关。为了确定 BGN 是否受致癌基因驱动的调控网络抑制,分析了 BGN 在小鼠和人 BGN/BGN K-RAS 转化模型系统以及不同结直肠癌(CRC)病变患者数据集的表达和功能。与正常结肠上皮细胞相比,K-RAS 突变型 CRC 组织表达的 BGN mRNA 和蛋白水平较低,这与患者生存率降低有关。与 BGN K-RAS 细胞相比,BGN 在小鼠和人 BGN K-RAS 表达细胞中的转染导致 BGN 细胞的生长和迁移减少。此外,在 BGN 恢复时发现 MHC I 表面抗原增加,这是由于抗原加工机制成分表达增强所致,这通过 BGN 与 BGN K-RAS 模型的 RNA 测序得到证实。此外,与 BGN K-RAS 转化成纤维细胞相比,BGN 转化成纤维细胞的肿瘤形成减少,与 MHC I 表达增强和肿瘤病变中浸润淋巴细胞频率增加有关。我们的数据首次提供了 BGN 与小鼠和人 K-RAS 过表达模型以及与改变的生长特性、降低的免疫原性和较差的患者预后相关的 CRC 病变中 K-RAS 表达之间的负相关。因此,BGN 的逆转可能是一种针对 K-RAS 相关恶性肿瘤的新型治疗选择。