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Therapeutic targeting of SPIB/SPI1‐facilitated interplay of cancer cells and neutrophils inhibits aerobic glycolysis and cancer progression

BACKGROUND: As a metabolic reprogramming feature, cancer cells derive most of their energy from aerobic glycolysis, while its regulatory mechanisms and therapeutic strategies continue to be illusive. METHODS: Integrative analysis of publically available expression profile datasets was used to identi...

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Autores principales: Wang, Jianqun, Wang, Xiaojing, Guo, Yanhua, Ye, Lin, Li, Dan, Hu, Anpei, Cai, Shuang, Yuan, Boling, Jin, Shikai, Zhou, Yi, Li, Qilan, Zheng, Liduan, Tong, Qiangsong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8567044/
https://www.ncbi.nlm.nih.gov/pubmed/34841706
http://dx.doi.org/10.1002/ctm2.588
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author Wang, Jianqun
Wang, Xiaojing
Guo, Yanhua
Ye, Lin
Li, Dan
Hu, Anpei
Cai, Shuang
Yuan, Boling
Jin, Shikai
Zhou, Yi
Li, Qilan
Zheng, Liduan
Tong, Qiangsong
author_facet Wang, Jianqun
Wang, Xiaojing
Guo, Yanhua
Ye, Lin
Li, Dan
Hu, Anpei
Cai, Shuang
Yuan, Boling
Jin, Shikai
Zhou, Yi
Li, Qilan
Zheng, Liduan
Tong, Qiangsong
author_sort Wang, Jianqun
collection PubMed
description BACKGROUND: As a metabolic reprogramming feature, cancer cells derive most of their energy from aerobic glycolysis, while its regulatory mechanisms and therapeutic strategies continue to be illusive. METHODS: Integrative analysis of publically available expression profile datasets was used to identify critical transcriptional regulators and their target glycolytic enzymes. The functions and acting mechanisms of transcriptional regulators in cancer cells were investigated by using in vitro and in vivo assays. The Kaplan–Meier curve and log‐rank assay were used to conduct the survival study. RESULTS: Salmonella pathogenicity island 1 (SPI1/PU.1), a haematopoietic transcription factor, was identified to facilitate glycolytic process, tumourigenesis, invasiveness, as well as metastasis of colon cancer cells, which was interplayed by tumour‐associated neutrophils. Mechanistically, neutrophils delivered SPI1 mRNA via extracellular vesicles, resulting in enhanced SPI1 expression of cancer cells. Through physical interaction with SPI1‐related protein (SPIB), SPI1 drove expression of glycolytic genes within cancer cells, which in turn induced polarization of neutrophils via glycolytic metabolite lactate. Depletion of neutrophils or SPIB–SPI1 interaction in cancer cells significantly inhibited glycolytic process, tumourigenesis and aggressiveness. Upregulation of SPI1 or SPIB was found to be associated with poor prognosis in patients suffering from colon cancer. CONCLUSIONS: Therapeutic targeting of SPIB/SPI1‐facilitated interplay of cancerous cells and neutrophils suppresses aerobic glycolysis and progression of cancer.
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spelling pubmed-85670442021-11-09 Therapeutic targeting of SPIB/SPI1‐facilitated interplay of cancer cells and neutrophils inhibits aerobic glycolysis and cancer progression Wang, Jianqun Wang, Xiaojing Guo, Yanhua Ye, Lin Li, Dan Hu, Anpei Cai, Shuang Yuan, Boling Jin, Shikai Zhou, Yi Li, Qilan Zheng, Liduan Tong, Qiangsong Clin Transl Med Research Articles BACKGROUND: As a metabolic reprogramming feature, cancer cells derive most of their energy from aerobic glycolysis, while its regulatory mechanisms and therapeutic strategies continue to be illusive. METHODS: Integrative analysis of publically available expression profile datasets was used to identify critical transcriptional regulators and their target glycolytic enzymes. The functions and acting mechanisms of transcriptional regulators in cancer cells were investigated by using in vitro and in vivo assays. The Kaplan–Meier curve and log‐rank assay were used to conduct the survival study. RESULTS: Salmonella pathogenicity island 1 (SPI1/PU.1), a haematopoietic transcription factor, was identified to facilitate glycolytic process, tumourigenesis, invasiveness, as well as metastasis of colon cancer cells, which was interplayed by tumour‐associated neutrophils. Mechanistically, neutrophils delivered SPI1 mRNA via extracellular vesicles, resulting in enhanced SPI1 expression of cancer cells. Through physical interaction with SPI1‐related protein (SPIB), SPI1 drove expression of glycolytic genes within cancer cells, which in turn induced polarization of neutrophils via glycolytic metabolite lactate. Depletion of neutrophils or SPIB–SPI1 interaction in cancer cells significantly inhibited glycolytic process, tumourigenesis and aggressiveness. Upregulation of SPI1 or SPIB was found to be associated with poor prognosis in patients suffering from colon cancer. CONCLUSIONS: Therapeutic targeting of SPIB/SPI1‐facilitated interplay of cancerous cells and neutrophils suppresses aerobic glycolysis and progression of cancer. John Wiley and Sons Inc. 2021-11-04 /pmc/articles/PMC8567044/ /pubmed/34841706 http://dx.doi.org/10.1002/ctm2.588 Text en © 2021 The Authors. Clinical and Translational Medicine published by John Wiley & Sons Australia, Ltd on behalf of Shanghai Institute of Clinical Bioinformatics https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Wang, Jianqun
Wang, Xiaojing
Guo, Yanhua
Ye, Lin
Li, Dan
Hu, Anpei
Cai, Shuang
Yuan, Boling
Jin, Shikai
Zhou, Yi
Li, Qilan
Zheng, Liduan
Tong, Qiangsong
Therapeutic targeting of SPIB/SPI1‐facilitated interplay of cancer cells and neutrophils inhibits aerobic glycolysis and cancer progression
title Therapeutic targeting of SPIB/SPI1‐facilitated interplay of cancer cells and neutrophils inhibits aerobic glycolysis and cancer progression
title_full Therapeutic targeting of SPIB/SPI1‐facilitated interplay of cancer cells and neutrophils inhibits aerobic glycolysis and cancer progression
title_fullStr Therapeutic targeting of SPIB/SPI1‐facilitated interplay of cancer cells and neutrophils inhibits aerobic glycolysis and cancer progression
title_full_unstemmed Therapeutic targeting of SPIB/SPI1‐facilitated interplay of cancer cells and neutrophils inhibits aerobic glycolysis and cancer progression
title_short Therapeutic targeting of SPIB/SPI1‐facilitated interplay of cancer cells and neutrophils inhibits aerobic glycolysis and cancer progression
title_sort therapeutic targeting of spib/spi1‐facilitated interplay of cancer cells and neutrophils inhibits aerobic glycolysis and cancer progression
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8567044/
https://www.ncbi.nlm.nih.gov/pubmed/34841706
http://dx.doi.org/10.1002/ctm2.588
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