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The Colon-26 Carcinoma Tumor-bearing Mouse as a Model for the Study of Cancer Cachexia
Published on: November 30, 2016
Intratumor HIF-1α modulates production of a cachectic ligand to cause host wasting
Gen Xiao1,2, Yingge Li1,2, Yanhui Hu3
1Department of Hepatobiliary and Pancreatic Surgery, Frontier Science Center for Immunology and Metabolism, Medical Research Institute, Zhongnan Hospital of Wuhan University, Wuhan University, Wuhan 430071, Hubei, China.
Abstract:
Tumor-host interactions play critical roles in cancer-associated cachexia. Previous studies have identified several cachectic proteins secreted by tumors that impair metabolic homeostasis in multiple organs, leading to host wasting. The molecular mechanisms by which malignant tumors regulate the production or secretion of these cachectic proteins, however, still remain largely unknown. In this study, we used different Drosophila cachexia models to investigate how malignant tumors regulate biosynthesis of ImpL2, a conserved cachectic protein that inhibits systemic insulin/IGF signaling and suppresses anabolism of host organs. Through bioinformatic and biochemical analysis, we found that hypoxia-inducible factor HIF-1α/Sima directly binds to the promoter region of ImpL2 gene for the first time, promoting its transcription in both tumors and non-tumor cells. Interestingly, expressing HphA to moderately suppress HIF-1α/Sima activity in adult yki gut tumors or larval scrib Ras disc tumors sufficiently decreased ImpL2 expression and improved organ wasting, without affecting tumor growth. We further revealed conserved regulatory mechanisms conserved across species, as intratumor HIF-1α enhances the production of IGFBP-5, a mammalian homolog of fly ImpL2, contributing to organ wasting in both tumor-bearing mice and patients. Therefore, our study provides novel insights into the mechanisms by which tumors regulate production of cachectic ligands and the pathogenesis of cancer-induced cachexia.
Insights
Malignant tumors promote cancer cachexia by increasing the cachectic protein ImpL2. Hypoxia-inducible factor HIF-1α drives ImpL2 production, causing host wasting conserved across species.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Tumor-host interactions are crucial in cancer-associated cachexia.
- Cachectic proteins secreted by tumors disrupt metabolic homeostasis and cause host wasting.
- Mechanisms regulating tumor production of cachectic proteins are largely unknown.
Purpose of the Study:
- Investigate how malignant tumors regulate the biosynthesis of ImpL2, a cachectic protein inhibiting insulin/IGF signaling.
- Elucidate the molecular mechanisms driving cachectic protein production in cancer.
Main Methods:
- Utilized Drosophila melanogaster cachexia models.
- Performed bioinformatic and biochemical analyses.
- Assessed the impact of suppressing HIF-1α/Sima activity on ImpL2 expression and organ wasting.
Main Results:
- Identified Hypoxia-Inducible Factor 1-alpha (HIF-1α) as a direct promoter of ImpL2 gene transcription.
- Demonstrated that suppressing HIF-1α/Sima activity reduces ImpL2 expression and improves organ wasting in Drosophila models without affecting tumor growth.
- Revealed conserved mechanisms, with tumor HIF-1α enhancing IGFBP-5 production in mice, a homolog of ImpL2.
Conclusions:
- Tumor-derived HIF-1α is a key regulator of ImpL2 production, contributing to cancer cachexia.
- Targeting HIF-1α may offer a therapeutic strategy to mitigate cancer-induced host wasting.
- The findings highlight conserved cross-species mechanisms in cachexia pathogenesis.

