4.6 Article

Anti-tumour effects of a macrolide analog F806 in oesophageal squamous cell carcinoma cells by targeting and promoting GLUT1 autolysosomal degradation

期刊

FEBS JOURNAL
卷 289, 期 21, 页码 6782-6798

出版社

WILEY
DOI: 10.1111/febs.16545

关键词

anticancer drug; autolysosomal degradation; F806; glucose transport; GLUT1

资金

  1. National Natural Science Foundation of China [81602630]
  2. Guangdong Basic and Applied Basic Research Foundation [2020A1515011532]
  3. Educational Commission of Guangdong Province [2017KQNCX070]
  4. 2020 Li Ka Shing Foundation Cross-Disciplinary Research Grant [2020LKSFG02F]

向作者/读者索取更多资源

The study reveals a novel anti-tumour mechanism of F806 in inhibiting the growth of ESCC cells by targeting and promoting the internalization and degradation of GLUT1, and by inducing glucose starvation response and inhibiting energy production.
Cancer cells are characterized by altered energetic metabolism with increasing glucose uptake. F806, a 16-membered macrodiolide analogue, has anti-tumour effects on oesophageal squamous cell carcinoma (ESCC) cells. However, its precise anti-tumour mechanism remains unclear. Here, metascape analysis of our previous quantitative proteomics data showed that F806 induced glucose starvation response and inhibited energy production in ESCC cells. The reduced glucose uptake and ATP production were further validated by the fluorescent methods, using glucose-conjugated bioprobe Glu-1-O-DCSN, and the bioluminescent methods, respectively. Consistently, under F806 treatment the AMP-activated protein kinase signalling was activated, and autophagy flux was promoted and more autophagosomes were formed. Moreover, live-cell imaging and immunofluorescence analysis showed that F806 induced GLUT1 plasma membrane dissociation and promoted its internalization and autolysosome accumulation and lysosome degradation. Furthermore, molecular docking studies demonstrated that F806 bound to GLUT1 with a comparable binding energy to that of GLUT1's direct interacting inhibitor cytochalasin B. Amino acid mutation was used to test which residues of GLUT1 may participate in F806 mediated-GLUT1 internalization and degradation, and results showed that Thr137, Asn411 and Trp388 were required for GLUT1 internalization and degradation, respectively. Taken together, these findings shed light on a novel anti-tumour mechanism of F806 by targeting and promoting GLUT1 internalization and further autolysosomal degradation.

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