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![Radiosynthesis of 1-2-[18F]Fluoroethyl-L-Tryptophan using a One-pot, Two-step Protocol](/_next/image?url=https%3A%2F%2Fcloudfront.jove.com%2FCDNSource%2Fteasers%2F63025.jpg&w=3840&q=50)
Radiosynthesis of 1-2-[18F]Fluoroethyl-L-Tryptophan using a One-pot, Two-step Protocol
Published on: September 21, 2021
Targeting SERT promotes tryptophan metabolism: mechanisms and implications in colon cancer treatment
Di Ye1, Huanji Xu1, Hongwei Xia1
1Department of Medical Oncology, Cancer Center and Laboratory of Molecular, Targeted Therapy in Oncology, West China Hospital, Sichuan University, Chengdu, 610041, Sichuan Province, China.
Background:
Serotonin signaling has been associated with tumorigenesis and tumor progression. Targeting the serotonin transporter to block serotonin cellular uptake confers antineoplastic effects in various tumors, including colon cancer. However, the antineoplastic mechanism of serotonin transporter inhibition and serotonin metabolism alterations in the absence of serotonin transporter have not been elucidated, especially in colon cancer, which might limit anti-tumor effects associating with targeting serotonin transporter.
Methods:
The promotion in the uptake and catabolism of extracellular tryptophan and targeting serotonin transporter was detected by using quantitative reverse-transcription polymerase chain reaction, western blotting and liquid chromatography tandem mass spectrometry. Western blotting Immunoprecipitation and immunofluorescence was utilized to research the serotonylation of mTOR by serotonin and serotonin transporter inhibition. The primary mouse model, homograft model and tissue microarry was used to explore the tryptophan pathway in colon cancer. The cell viability assay, western blotting, xenograft and primary colon cancer mouse model were used to identify whether the combination of sertraline and tryptophan restriction had a synergistic effect.
Results:
Targeting serotonin transporter through genetic ablation or pharmacological inhibition in vitro and in vivo induced a compensatory effect by promoting the uptake and catabolism of extracellular tryptophan in colon cancer. Mechanistically, targeting serotonin transporter suppressed mTOR serotonylation, leading to mTOR inactivation and increased tryptophan uptake. In turn, this process promoted serotonin biosynthesis and oncogenic metabolite kynurenine production through enhanced tryptophan catabolism. Tryptophan deprivation, or blocking its uptake by using trametinib, a MEK inhibitor, can sensitize colon cancer to selective serotonin reuptake inhibitors.
Conclusions:
The present study elucidated a novel feedback mechanism involved in the regulation of serotonin homeostasis and suggested innovative strategies for selective serotonin reuptake inhibitors-based treatment of colon cancer.
Insights
Targeting the serotonin transporter in colon cancer promotes tryptophan uptake and catabolism, leading to increased tumor growth. Blocking tryptophan uptake sensitizes colon cancer to serotonin transporter inhibitors.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Serotonin signaling influences tumorigenesis and progression.
- Targeting the serotonin transporter (SERT) shows anti-cancer effects in colon cancer.
- Mechanisms of SERT inhibition and altered serotonin metabolism in colon cancer remain unclear.
Purpose of the Study:
- Elucidate the anti-cancer mechanism of SERT inhibition in colon cancer.
- Investigate serotonin and tryptophan metabolism alterations.
- Explore novel therapeutic strategies for colon cancer treatment.
Main Methods:
- Quantitative PCR, Western blotting, and mass spectrometry to analyze tryptophan uptake and catabolism.
- Immunoprecipitation and immunofluorescence to study mTOR serotonylation.
- Mouse models (primary, homograft, xenograft) and tissue microarrays to explore the tryptophan pathway.
- Cell viability assays to assess synergistic effects of sertraline and tryptophan restriction.
Main Results:
- SERT inhibition promotes compensatory tryptophan uptake and catabolism in colon cancer.
- SERT inhibition suppresses mTOR serotonylation, leading to mTOR inactivation and increased tryptophan uptake.
- Enhanced tryptophan catabolism boosts serotonin biosynthesis and kynurenine production.
- Tryptophan deprivation or MEK inhibition sensitizes colon cancer to selective serotonin reuptuptake inhibitors (SSRIs).
Conclusions:
- A novel feedback mechanism regulating serotonin homeostasis in colon cancer was identified.
- Findings suggest innovative strategies for SSRI-based colon cancer therapy.
- Understanding tryptophan metabolism is crucial for optimizing SERT-targeted cancer treatments.
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