Department of Medicine, Division of Hematology, The Johns Hopkins University School of Medicine, Baltimore, Maryland.
Departments of Oncology, Pathology and Institute of Cellular Engineering, The Johns Hopkins University School of Medicine, Baltimore, Maryland.
Cancer Res. 2018 Apr 15;78(8):1890-1897. doi: 10.1158/0008-5472.CAN-17-3045. Epub 2018 Apr 4.
High mobility group A1 (HMGA1) chromatin remodeling proteins are enriched in aggressive cancers and stem cells, although their common function in these settings has remained elusive until now. Recent work in murine intestinal stem cells (ISC) revealed a novel role for Hmga1 in enhancing self-renewal by amplifying Wnt signaling, both by inducing genes expressing Wnt agonist receptors and Wnt effectors. Surprisingly, Hmga1 also "builds" a stem cell niche by upregulating , a factor required for differentiation to Paneth cells; these cells constitute an epithelial niche by secreting Wnt and other factors to support ISCs. is also highly upregulated in colon cancer compared with nonmalignant epithelium and becomes overexpressed during colon carcinogenesis. Intriguingly, is overexpressed in diverse cancers with poor outcomes, where it regulates developmental genes. Similarly, HMGA1 induces genes responsible for pluripotency and self-renewal in embryonic stem cells. These findings demonstrate that HMGA1 maintains Wnt and other developmental transcriptional networks and suggest that overexpression fosters carcinogenesis and tumor progression through dysregulation of these pathways. Studies are now needed to determine more precisely how HMGA1 modulates chromatin structure to amplify developmental genes and how to disrupt this process in cancer therapy. .
高迁移率族蛋白 A1(HMGA1)染色质重塑蛋白在侵袭性癌症和干细胞中丰富,但它们在这些环境中的共同功能至今仍难以捉摸。最近在小鼠肠干细胞(ISC)中的研究工作揭示了 Hmga1 在通过增强 Wnt 信号放大来增强自我更新中的新作用,这既通过诱导表达 Wnt 激动剂受体和 Wnt 效应物的基因来实现。令人惊讶的是,Hmga1 还通过上调 ,上调因子来“构建”干细胞生态位,分化为 Paneth 细胞所需的因子;这些细胞通过分泌 Wnt 和其他因子来支持 ISC 构成上皮生态位。与非恶性上皮相比,在结肠癌中 也高度上调,并且在结肠癌发生过程中过度表达。有趣的是,在预后不良的多种癌症中 过度表达,它调节发育基因。同样,HMGA1 在胚胎干细胞中诱导负责多能性和自我更新的基因。这些发现表明 HMGA1 维持 Wnt 和其他发育转录网络,并表明 过表达通过这些途径的失调促进癌发生和肿瘤进展。现在需要研究更精确地确定 HMGA1 如何调节染色质结构以放大发育基因,以及如何在癌症治疗中破坏这一过程。