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SLC5A3 is important for cervical cancer cell growth

Novel molecular targets for cervical cancer must be identified. This study examined the role of SLC5A3, a myo-inositol transporter, in the pathogenesis of cervical cancer. Through boinformatics analysis, we showed that the SLC5A3 mRNA levels were upregulated in cervical cancer tissues. The upregulat...

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Autores principales: Li, Li, Shen, Fang-rong, Cheng, Qunxian, Sun, Jing, Li, Hang, Sun, Hua-ting, Cai, Xia, Chen, Mengting, Yang, Baohua, Wang, Lifeng, Xu, Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10266070/
https://www.ncbi.nlm.nih.gov/pubmed/37324953
http://dx.doi.org/10.7150/ijbs.84570
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author Li, Li
Shen, Fang-rong
Cheng, Qunxian
Sun, Jing
Li, Hang
Sun, Hua-ting
Cai, Xia
Chen, Mengting
Yang, Baohua
Wang, Lifeng
Xu, Ling
author_facet Li, Li
Shen, Fang-rong
Cheng, Qunxian
Sun, Jing
Li, Hang
Sun, Hua-ting
Cai, Xia
Chen, Mengting
Yang, Baohua
Wang, Lifeng
Xu, Ling
author_sort Li, Li
collection PubMed
description Novel molecular targets for cervical cancer must be identified. This study examined the role of SLC5A3, a myo-inositol transporter, in the pathogenesis of cervical cancer. Through boinformatics analysis, we showed that the SLC5A3 mRNA levels were upregulated in cervical cancer tissues. The upregulated SLC5A3 mRNA levels were negatively correlated with survival and progression-free interval. Genes co-expressed with SLC5A3 were enriched in multiple signaling cascades involved in cancer progression. In primary/established cervical cancer cells, SLC5A3 shRNA/knockout (KO) exerted growth-inhibitory effects and promoted cell death/apoptosis. Furthermore, SLC5A3 knockdown or KO downregulated myo-inositol levels, induced oxidative injury, and decreased Akt-mTOR activation in cervical cancer cells. In contrast, supplementation of myo-inositol or n-acetyl-L-cysteine or transduction of a constitutively active Akt1 construct mitigated SLC5A3 KO-induced cytotoxicity in cervical cancer cells. Lentiviral SLC5A3 overexpression construct transduction upregulated the cellular myo-inositol level and promoted Akt-mTOR activation, enhancing cervical cancer cell proliferation and migration. The binding of TonEBP to the SLC5A3 promoter was upregulated in cervical cancer. In vivo studies showed that intratumoral injection of SLC5A3 shRNA-expressing virus arrested cervical cancer xenograft growth in mice. SLC5A3 KO also inhibited pCCa-1 cervical cancer xenograft growth. The SLC5A3-depleted xenograft tissues exhibited myo-inositol downregulation, Akt-mTOR inactivation, and oxidative injury. Transduction of sh-TonEBP AAV construct downregulated SLC5A3 expression and inhibited pCCa-1 cervical cancer xenograft growth. Together, overexpressed SLC5A3 promotes growth of cervical cancer cells, representing as a novel therapeutic oncotarget for the devastating disease.
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spelling pubmed-102660702023-06-15 SLC5A3 is important for cervical cancer cell growth Li, Li Shen, Fang-rong Cheng, Qunxian Sun, Jing Li, Hang Sun, Hua-ting Cai, Xia Chen, Mengting Yang, Baohua Wang, Lifeng Xu, Ling Int J Biol Sci Research Paper Novel molecular targets for cervical cancer must be identified. This study examined the role of SLC5A3, a myo-inositol transporter, in the pathogenesis of cervical cancer. Through boinformatics analysis, we showed that the SLC5A3 mRNA levels were upregulated in cervical cancer tissues. The upregulated SLC5A3 mRNA levels were negatively correlated with survival and progression-free interval. Genes co-expressed with SLC5A3 were enriched in multiple signaling cascades involved in cancer progression. In primary/established cervical cancer cells, SLC5A3 shRNA/knockout (KO) exerted growth-inhibitory effects and promoted cell death/apoptosis. Furthermore, SLC5A3 knockdown or KO downregulated myo-inositol levels, induced oxidative injury, and decreased Akt-mTOR activation in cervical cancer cells. In contrast, supplementation of myo-inositol or n-acetyl-L-cysteine or transduction of a constitutively active Akt1 construct mitigated SLC5A3 KO-induced cytotoxicity in cervical cancer cells. Lentiviral SLC5A3 overexpression construct transduction upregulated the cellular myo-inositol level and promoted Akt-mTOR activation, enhancing cervical cancer cell proliferation and migration. The binding of TonEBP to the SLC5A3 promoter was upregulated in cervical cancer. In vivo studies showed that intratumoral injection of SLC5A3 shRNA-expressing virus arrested cervical cancer xenograft growth in mice. SLC5A3 KO also inhibited pCCa-1 cervical cancer xenograft growth. The SLC5A3-depleted xenograft tissues exhibited myo-inositol downregulation, Akt-mTOR inactivation, and oxidative injury. Transduction of sh-TonEBP AAV construct downregulated SLC5A3 expression and inhibited pCCa-1 cervical cancer xenograft growth. Together, overexpressed SLC5A3 promotes growth of cervical cancer cells, representing as a novel therapeutic oncotarget for the devastating disease. Ivyspring International Publisher 2023-05-27 /pmc/articles/PMC10266070/ /pubmed/37324953 http://dx.doi.org/10.7150/ijbs.84570 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Li, Li
Shen, Fang-rong
Cheng, Qunxian
Sun, Jing
Li, Hang
Sun, Hua-ting
Cai, Xia
Chen, Mengting
Yang, Baohua
Wang, Lifeng
Xu, Ling
SLC5A3 is important for cervical cancer cell growth
title SLC5A3 is important for cervical cancer cell growth
title_full SLC5A3 is important for cervical cancer cell growth
title_fullStr SLC5A3 is important for cervical cancer cell growth
title_full_unstemmed SLC5A3 is important for cervical cancer cell growth
title_short SLC5A3 is important for cervical cancer cell growth
title_sort slc5a3 is important for cervical cancer cell growth
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10266070/
https://www.ncbi.nlm.nih.gov/pubmed/37324953
http://dx.doi.org/10.7150/ijbs.84570
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