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脂肪组织分泌的Spz5通过果蝇中Toll-6介导的Hh信号通路激活促进远端肿瘤进展。

Adipose tissue-secreted Spz5 promotes distal tumor progression via Toll-6-mediated Hh pathway activation in Drosophila.

作者信息

Kong Du, Li Xiaoqin, Zhao Sihua, Wang Chenliang, Cai Zixin, Song Sha, Guo Yifan, Kuang Xiaoyu, Wang Xianping, Liu Wenhan, Liu Peng, Guo Xiaowei, Xu Wenyan, Wang Yirong, Zhao Bin, Jin Bin, He Li, Ma Xianjue

机构信息

School of Life Sciences, Westlake University, 310024, Hangzhou, Zhejiang, China.

Westlake Laboratory of Life Sciences and Biomedicine, 310024, Hangzhou, Zhejiang, China.

出版信息

EMBO J. 2025 Jun 23. doi: 10.1038/s44318-025-00489-y.

Abstract

Interorgan communication is vital for tissue homeostasis and health in multicellular organisms, and its disruption can lead to diseases such as cancer. Adipose tissue acts as a key endocrine center, secreting cytokines that influence remote organs. Despite clear links between obesity and increased cancer risk, the underlying mechanisms are unclear. Here, utilizing a Drosophila genetic model combining Gal4-UAS and QF-QUAS tissue-specific transgene expression systems, we reveal that adipose-secreted Spz5 ligand promotes distal epithelial tumor overgrowth and invasion. Mechanistically, Spz5 binds to tumor cell Toll-6 receptors, triggering the degradation of the endocytic adaptor protein AP-2α via Mib1-mediated ubiquitination. Consequently, impaired endocytosis leads to Smoothened (Smo) accumulation on the cell membrane and subsequent activation of the Hedgehog (Hh) pathway. This abnormal Hh activation synergizes with the oncogenic Yorkie (Yki) to drive tumor growth and invasion. Furthermore, tumor-derived Unpaired ligands (Upds) activate the JAK-STAT pathway in the fat bodies, which leads to Hippo pathway-dependent upregulation of spz5 expression. Thus, our study provides insights into the complex regulatory mechanisms by which systemic interorgan communication influences tumor progression.

摘要

器官间通讯对于多细胞生物的组织稳态和健康至关重要,其破坏会导致癌症等疾病。脂肪组织作为关键的内分泌中心,分泌影响远端器官的细胞因子。尽管肥胖与癌症风险增加之间存在明确联系,但其潜在机制尚不清楚。在这里,利用结合Gal4-UAS和QF-QUAS组织特异性转基因表达系统的果蝇遗传模型,我们揭示脂肪分泌的Spz5配体促进远端上皮肿瘤过度生长和侵袭。从机制上讲,Spz5与肿瘤细胞的Toll-6受体结合,通过Mib1介导的泛素化触发内吞衔接蛋白AP-2α的降解。因此,内吞作用受损导致Smoothened(Smo)在细胞膜上积累,并随后激活Hedgehog(Hh)通路。这种异常的Hh激活与致癌的Yorkie(Yki)协同作用,驱动肿瘤生长和侵袭。此外,肿瘤衍生的Unpaired配体(Upds)激活脂肪体中的JAK-STAT通路,这导致spz5表达的Hippo通路依赖性上调。因此,我们的研究为全身器官间通讯影响肿瘤进展的复杂调控机制提供了见解。

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