Proteomics Lab, Department of Biosciences & Bioengineering, IIT Bombay, Mumbai, 400076, India.
Department Computer Science and Engineering, IIT Bombay, Mumbai, 400076, India.
Brain Tumor Pathol. 2021 Apr;38(2):96-108. doi: 10.1007/s10014-020-00391-x. Epub 2021 Jan 12.
Medulloblastoma, a common malignant brain tumor in children, comprises four molecular subgroups WNT, SHH, Group 3, and Group 4. In the present study, we performed a deep proteome-based investigation of SHH, Group 3 and Group 4 tumors. The adult SHH medulloblastomas were found to have a distinct proteomic profile. Several RNA metabolism-related pathways including mRNA splicing, 5' to 3' RNA decay, 3' to 5' RNA decay by the RNA exosome, and the N6-methyladenosine modification of RNA were enriched in adult SHH tumors. The heightened expression of the RNA surveillance pathways is likely to be essential for the viability of adult SHH subgroup medulloblastomas, which carry mutations in U1snRNA encoding gene and thus could be a vulnerability of these tumors. Group 3 and Group 4 medulloblastomas, on the other hand, are known to have an overlap in their expression profiles and underlying genetic alterations. Group 3 proteome was found to be distinctively enriched in several metabolic pathways including glycolysis, gluconeogenesis, glutamine anabolism, glutathione-mediated anti-oxidant pathway, and drug metabolism pathway suggests that the extensive metabolic rewiring is likely to be responsible for the aggressive clinical behavior of Group 3 tumors. This comprehensive proteomic analysis has provided valuable insight into the biology of Group 3 and adult SHH medulloblastomas, which could be further explored for effective treatment of these tumors.
髓母细胞瘤是儿童常见的恶性脑肿瘤,包括 WNT、SHH、Group 3 和 Group 4 四个分子亚型。本研究对 SHH、Group 3 和 Group 4 肿瘤进行了深度蛋白质组学研究。成人 SHH 髓母细胞瘤具有独特的蛋白质组学特征。几种 RNA 代谢相关途径,包括 mRNA 剪接、5'到 3' RNA 降解、RNA 外切体介导的 3'到 5' RNA 降解和 RNA 的 N6-甲基腺苷修饰,在成人 SHH 肿瘤中富集。RNA 监测途径的高表达可能对携带 U1snRNA 编码基因突变的成人 SHH 亚组髓母细胞瘤的存活至关重要,这可能是这些肿瘤的一个弱点。另一方面,Group 3 和 Group 4 髓母细胞瘤在其表达谱和潜在的遗传改变方面存在重叠。Group 3 蛋白质组被发现明显富集在几种代谢途径中,包括糖酵解、糖异生、谷氨酰胺合成、谷胱甘肽介导的抗氧化途径和药物代谢途径,这表明广泛的代谢重编程可能是 Group 3 肿瘤侵袭性行为的原因。这项全面的蛋白质组学分析为 Group 3 和成人 SHH 髓母细胞瘤的生物学提供了有价值的见解,这可能为这些肿瘤的有效治疗进一步探索。