Ohata Yae, Ali Mohamad M, Tsubakihara Yutaro, Itoh Yuka, Rosén Gabriela, Bergström Tobias, Morén Anita, Golán-Cancela Irene, Nakada Ayana, Voytyuk Oleksandr, Tsuchiya Maiko, Fukui Rei, Yamamoto Kouhei, Martín-Rubio Paula, Sancho Patricia, Strell Carina, Micke Patrick, Wechsler-Reya Robert J, Hashizume Yoshinobu, Miyazono Kohei, Caja Laia, Heldin Carl-Henrik, Swartling Fredrik J, Moustakas Aristidis
Department of Medical Biochemistry and Microbiology, Science for Life Laboratory, Box 582, Biomedical Center, Uppsala University, Uppsala, Sweden.
Department of Biochemistry, Graduate School of Medicine, University of Yamanashi, Chuo, Yamanashi, Japan.
Cell Death Differ. 2025 Mar 28. doi: 10.1038/s41418-025-01488-6.
Oncogenic events perturb cerebellar development leading to medulloblastoma, a common childhood brain malignancy. Molecular analyses classify medulloblastoma into the WNT, SHH, Group 3 and Group 4 subgroups. Bone morphogenetic protein (BMP) pathways control cerebellar development and have been linked to the progression of medulloblastoma disease, with major remaining gaps in their mechanistic and clinically-relevant roles. We therefore aimed at exploring BMP mechanisms of action in medulloblastoma. Patient-derived tumors from different subgroups were analyzed in mouse xenografts, complemented by independent tumor immunohistochemical analysis. Cell-based assays analyzed signaling mechanisms. Medulloblastoma cell orthotopic xenografts analyzed tumor growth and metastasis in vivo. Active BMP signaling, detected as nuclear and phosphorylated SMAD1/5, characterized several medulloblastoma subgroups, with enrichment in Group 4, SHH and Group 3 tumors. Spatial transcriptomics in tumor areas, complemented by transcriptomic analysis of multiple cell models, identified BMP-dependent transcriptional induction of the LIM-homeobox gene 2 (LHX2). BMP signaling via SMADs induced LHX2 expression and LHX2 transcriptionally induced BMP type I receptor (ACVR1) expression by association with the proximal promoter region of the ACVR1 gene. BMP signaling and LHX2 gain-of-function expression led to enriched stemness and associated chemoresistance in medulloblastoma cultures. In-mouse orthotopic transplantation of paired primary/recurrent Group 4 medulloblastoma cell populations, correspondingly expressing LHX2-low/BMP-low signaling and LHX2-high/BMP-high signaling, ascribed to the latter (high) group more efficient tumor propagation and spinal cord metastatic potential. Depletion of LHX2 in these recurrent tumor cells suppressed both BMP signaling and tumor propagation in vivo. Thus, LHX2 cooperates with, and enhances, oncogenic BMP signaling in medulloblastoma tumors. The molecular pathway that couples LHX2 function to BMP signaling in medulloblastoma deepens our understanding this malignancy.
致癌事件扰乱小脑发育,导致髓母细胞瘤,这是一种常见的儿童脑恶性肿瘤。分子分析将髓母细胞瘤分为WNT、SHH、3组和4组亚群。骨形态发生蛋白(BMP)通路控制小脑发育,并与髓母细胞瘤疾病的进展有关,但其作用机制和临床相关作用仍存在重大差距。因此,我们旨在探索BMP在髓母细胞瘤中的作用机制。在小鼠异种移植中分析了来自不同亚群的患者来源肿瘤,并辅以独立的肿瘤免疫组织化学分析。基于细胞的试验分析了信号传导机制。髓母细胞瘤细胞原位异种移植分析了体内肿瘤的生长和转移。作为核和磷酸化SMAD1/5检测到的活性BMP信号,是几个髓母细胞瘤亚群的特征,在4组、SHH和3组肿瘤中富集。肿瘤区域的空间转录组学,辅以多个细胞模型的转录组分析,确定了LIM同源盒基因2(LHX2)的BMP依赖性转录诱导。通过SMADs的BMP信号诱导LHX2表达,LHX2通过与ACVR1基因的近端启动子区域结合转录诱导BMP I型受体(ACVR1)表达。BMP信号和LHX2功能获得性表达导致髓母细胞瘤培养物中干细胞特性增强和相关的化疗耐药性。在小鼠原位移植配对的原发性/复发性4组髓母细胞瘤细胞群体中,相应地表达LHX2低/BMP低信号和LHX2高/BMP高信号,后者(高)组具有更有效的肿瘤增殖和脊髓转移潜力。这些复发性肿瘤细胞中LHX2的缺失抑制了体内BMP信号和肿瘤增殖。因此,LHX2在髓母细胞瘤肿瘤中与致癌性BMP信号协同并增强其作用。将LHX2功能与髓母细胞瘤中的BMP信号耦合的分子途径加深了我们对这种恶性肿瘤的理解。