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刺猬因子靶基因调节脂质代谢以驱动基底细胞癌和髓母细胞瘤。

Hedgehog target genes regulate lipid metabolism to drive basal cell carcinoma and medulloblastoma.

作者信息

Daggubati Vikas, Vykunta Akshara, Choudhury Abrar, Qadeer Zulekha, Mirchia Kanish, Saulnier Olivier, Zakimi Naomi, Hines Kelly, Paul Michael, Wang Linyu, Jura Natalia, Xu Libin, Reiter Jeremy, Taylor Michael, Weiss William, Raleigh David

机构信息

University of California San Francisco.

University of California, San Francisco.

出版信息

Res Sq. 2023 Aug 3:rs.3.rs-3058335. doi: 10.21203/rs.3.rs-3058335/v1.

Abstract

Hedgehog (Hh) signaling is essential for development, homeostasis, and regeneration. Misactivation of the Hh pathway underlies medulloblastoma, the most common malignant brain tumor in children, and basal cell carcinoma (BCC), the most common cancer in the United States. Primary cilia regulate Hh signal transduction, but target genes that drive cell fate decisions in response to ciliary ligands or oncogenic Hh signaling are incompletely understood. Here we define the Hh gene expression program using RNA sequencing of cultured cells treated with ciliary ligands, BCCs from humans, and Hh-associated medulloblastomas from humans and mice (Fig. 1a). To validate our results, we integrate lipidomic mass spectrometry and bacterial metabolite labeling of free sterols with genetic and pharmacologic approaches in cells and mice. Our results reveal novel Hh target genes such as the oxysterol synthase and the adipokine that regulate lipid metabolism to drive cell fate decisions in response to Hh pathway activation. These data provide insights into cellular mechanisms underlying ciliary and oncogenic Hh signaling and elucidate targets to treat Hh-associated cancers.

摘要

刺猬信号通路(Hh)对于发育、体内平衡和再生至关重要。Hh通路的异常激活是髓母细胞瘤(儿童最常见的恶性脑肿瘤)和基底细胞癌(美国最常见的癌症)的发病基础。初级纤毛调节Hh信号转导,但对于响应纤毛配体或致癌性Hh信号传导驱动细胞命运决定的靶基因,我们还了解得并不完全。在此,我们通过对用纤毛配体处理的培养细胞、人类基底细胞癌以及人类和小鼠的Hh相关髓母细胞瘤进行RNA测序,来定义Hh基因表达程序(图1a)。为了验证我们的结果,我们将脂质组质谱分析和游离固醇的细菌代谢物标记与细胞和小鼠中的遗传及药理学方法相结合。我们的结果揭示了新的Hh靶基因,如氧甾醇合酶和脂肪因子,它们调节脂质代谢以响应Hh通路激活来驱动细胞命运决定。这些数据为纤毛和致癌性Hh信号传导的细胞机制提供了见解,并阐明了治疗Hh相关癌症的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2968/10418546/8f39160141de/nihpp-rs3058335v1-f0001.jpg

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