一种肿瘤分泌蛋白利用胰高血糖素的释放引起宿主消瘦。

IF 13 1区 生物学 Q1 CELL BIOLOGY
Guangming Ding, Yingge Li, Chen Cheng, Kai Tan, Yifei Deng, Huiwen Pang, Zhongyuan Wang, Peixuan Dang, Xing Wu, Elisabeth Rushworth, Yufeng Yuan, Zhiyong Yang, Wei Song
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引用次数: 0

摘要

肿瘤-宿主相互作用在多物种恶性肿瘤诱导的器官损耗中起关键作用。尽管已知肿瘤对单个外周器官的区域消耗有调节作用,但肿瘤是否以及如何利用关键宿主分解代谢激素同时诱导全身宿主消耗在很大程度上是未知的。在果蝇中使用保守的yki3sa -肿瘤模型,我们发现肿瘤增加了脂肪动力学激素(Akh)的产生,这是一种胰高血糖素样的分解代谢激素,导致全身宿主消耗,包括肌肉功能障碍、脂质损失、高血糖和卵巢萎缩。接下来,我们将RNAi筛选和Gal4-LexA双表达系统结合起来,发现yki3sa -肠肿瘤分泌Pvf1来远程激活其在Akh-产细胞(apc)中的受体Pvr,最终促进Akh的产生。潜在的分子机制涉及Pvf1-Pvr轴,该轴触发apc的mmp2依赖性ECM重塑并增强兴奋性胆碱能神经元的神经支配。有趣的是,我们也证实了哺乳动物肿瘤诱导的胰高血糖素释放和器官消耗的类似机制。阻断胰高血糖素或PDGFR (Pvr的同源物)的作用有效地改善了存在恶性肿瘤的器官消耗。因此,我们的研究结果表明,肿瘤通过Pvf1-Pvr轴远程促进神经相关的Akh/胰高血糖素的产生,导致全身宿主消耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A tumor-secreted protein utilizes glucagon release to cause host wasting.

Tumor‒host interaction plays a critical role in malignant tumor-induced organ wasting across multiple species. Despite known regulation of regional wasting of individual peripheral organs by tumors, whether and how tumors utilize critical host catabolic hormone(s) to simultaneously induce systemic host wasting, is largely unknown. Using the conserved yki3SA-tumor model in Drosophila, we discovered that tumors increase the production of adipokinetic hormone (Akh), a glucagon-like catabolic hormone, to cause systemic host wasting, including muscle dysfunction, lipid loss, hyperglycemia, and ovary atrophy. We next integrated RNAi screening and Gal4-LexA dual expression system to show that yki3SA-gut tumors secrete Pvf1 to remotely activate its receptor Pvr in Akh-producing cells (APCs), ultimately promoting Akh production. The underlying molecular mechanisms involved the Pvf1-Pvr axis that triggers Mmp2-dependent ECM remodeling of APCs and enhances innervation from the excitatory cholinergic neurons. Interestingly, we also confirmed the similar mechanisms governing tumor-induced glucagon release and organ wasting in mammals. Blockade of either glucagon or PDGFR (homolog of Pvr) action efficiently ameliorated organ wasting in the presence of malignant tumors. Therefore, our results demonstrate that tumors remotely promote neural-associated Akh/glucagon production via Pvf1-Pvr axis to cause systemic host wasting.

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来源期刊
Cell Discovery
Cell Discovery Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
24.20
自引率
0.60%
发文量
120
审稿时长
20 weeks
期刊介绍: Cell Discovery is a cutting-edge, open access journal published by Springer Nature in collaboration with the Center for Excellence in Molecular Cell Science, Chinese Academy of Sciences (CAS). Our aim is to provide a dynamic and accessible platform for scientists to showcase their exceptional original research. Cell Discovery covers a wide range of topics within the fields of molecular and cell biology. We eagerly publish results of great significance and that are of broad interest to the scientific community. With an international authorship and a focus on basic life sciences, our journal is a valued member of Springer Nature's prestigious Molecular Cell Biology journals. In summary, Cell Discovery offers a fresh approach to scholarly publishing, enabling scientists from around the world to share their exceptional findings in molecular and cell biology.
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