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Sialylation of vasorin by ST3Gal1 facilitates TGF‐β1‐mediated tumor angiogenesis and progression

ST3Gal1 is a key sialyltransferase which adds α2,3‐linked sialic acid to substrates and generates core 1 O‐glycan structure. Upregulation of ST3Gal1 has been associated with worse prognosis of breast cancer patients. However, the protein substrates of ST3Gal1 implicated in tumor progression remain e...

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Autores principales: Yeo, Hui Ling, Fan, Tan‐Chi, Lin, Ruey‐Jen, Yu, Jyh‐Cherng, Liao, Guo‐Shiou, Chen, Eric Sheng‐Wen, Ho, Ming‐Yi, Lin, Wen‐Der, Chen, Kowa, Chen, Chein‐Hung, Hung, Jung‐Tung, Wu, Jen‐Chine, Chang, Nai‐Chuan, Chang, Margaret Dah‐Tsyr, Yu, John, Yu, Alice Lin‐Tsing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6590135/
https://www.ncbi.nlm.nih.gov/pubmed/30252131
http://dx.doi.org/10.1002/ijc.31891
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author Yeo, Hui Ling
Fan, Tan‐Chi
Lin, Ruey‐Jen
Yu, Jyh‐Cherng
Liao, Guo‐Shiou
Chen, Eric Sheng‐Wen
Ho, Ming‐Yi
Lin, Wen‐Der
Chen, Kowa
Chen, Chein‐Hung
Hung, Jung‐Tung
Wu, Jen‐Chine
Chang, Nai‐Chuan
Chang, Margaret Dah‐Tsyr
Yu, John
Yu, Alice Lin‐Tsing
author_facet Yeo, Hui Ling
Fan, Tan‐Chi
Lin, Ruey‐Jen
Yu, Jyh‐Cherng
Liao, Guo‐Shiou
Chen, Eric Sheng‐Wen
Ho, Ming‐Yi
Lin, Wen‐Der
Chen, Kowa
Chen, Chein‐Hung
Hung, Jung‐Tung
Wu, Jen‐Chine
Chang, Nai‐Chuan
Chang, Margaret Dah‐Tsyr
Yu, John
Yu, Alice Lin‐Tsing
author_sort Yeo, Hui Ling
collection PubMed
description ST3Gal1 is a key sialyltransferase which adds α2,3‐linked sialic acid to substrates and generates core 1 O‐glycan structure. Upregulation of ST3Gal1 has been associated with worse prognosis of breast cancer patients. However, the protein substrates of ST3Gal1 implicated in tumor progression remain elusive. In our study, we demonstrated that ST3GAL1‐silencing significantly reduced tumor growth along with a notable decrease in vascularity of MCF7 xenograft tumors. We identified vasorin (VASN) which was shown to bind TGF‐β1, as a potential candidate that links ST3Gal1 to angiogenesis. LC‐MS/MS analysis of VASN secreted from MCF7, revealed that more than 80% of its O‐glycans are sialyl‐3T and disialyl‐T. ST3GAL1‐silencing or desialylation of VASN by neuraminidase enhanced its binding to TGF‐β1 by 2‐ to 3‐fold and thereby dampening TGF‐β1 signaling and angiogenesis, as indicated by impaired tube formation of HUVECs, suppressed angiogenesis gene expression and reduced activation of Smad2 and Smad3 in HUVEC cells. Examination of 114 fresh primary breast cancer and their adjacent normal tissues showed that the expression levels of ST3Gal1 and TGFB1 were high in tumor part and the expression of two genes was positively correlated. Kaplan Meier survival analysis showed a significantly shorter relapse‐free survival for those with lower expression VASN, notably, the combination of low VASN with high ST3GAL1 yielded even higher risk of recurrence (p = 0.025, HR = 2.967, 95% CI = 1.14–7.67). Since TGF‐β1 is known to transcriptionally activate ST3Gal1, our findings illustrated a feedback regulatory loop in which TGF‐β1 upregulates ST3Gal1 to circumvent the negative impact of VASN.
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spelling pubmed-65901352019-07-08 Sialylation of vasorin by ST3Gal1 facilitates TGF‐β1‐mediated tumor angiogenesis and progression Yeo, Hui Ling Fan, Tan‐Chi Lin, Ruey‐Jen Yu, Jyh‐Cherng Liao, Guo‐Shiou Chen, Eric Sheng‐Wen Ho, Ming‐Yi Lin, Wen‐Der Chen, Kowa Chen, Chein‐Hung Hung, Jung‐Tung Wu, Jen‐Chine Chang, Nai‐Chuan Chang, Margaret Dah‐Tsyr Yu, John Yu, Alice Lin‐Tsing Int J Cancer Molecular Cancer Biology ST3Gal1 is a key sialyltransferase which adds α2,3‐linked sialic acid to substrates and generates core 1 O‐glycan structure. Upregulation of ST3Gal1 has been associated with worse prognosis of breast cancer patients. However, the protein substrates of ST3Gal1 implicated in tumor progression remain elusive. In our study, we demonstrated that ST3GAL1‐silencing significantly reduced tumor growth along with a notable decrease in vascularity of MCF7 xenograft tumors. We identified vasorin (VASN) which was shown to bind TGF‐β1, as a potential candidate that links ST3Gal1 to angiogenesis. LC‐MS/MS analysis of VASN secreted from MCF7, revealed that more than 80% of its O‐glycans are sialyl‐3T and disialyl‐T. ST3GAL1‐silencing or desialylation of VASN by neuraminidase enhanced its binding to TGF‐β1 by 2‐ to 3‐fold and thereby dampening TGF‐β1 signaling and angiogenesis, as indicated by impaired tube formation of HUVECs, suppressed angiogenesis gene expression and reduced activation of Smad2 and Smad3 in HUVEC cells. Examination of 114 fresh primary breast cancer and their adjacent normal tissues showed that the expression levels of ST3Gal1 and TGFB1 were high in tumor part and the expression of two genes was positively correlated. Kaplan Meier survival analysis showed a significantly shorter relapse‐free survival for those with lower expression VASN, notably, the combination of low VASN with high ST3GAL1 yielded even higher risk of recurrence (p = 0.025, HR = 2.967, 95% CI = 1.14–7.67). Since TGF‐β1 is known to transcriptionally activate ST3Gal1, our findings illustrated a feedback regulatory loop in which TGF‐β1 upregulates ST3Gal1 to circumvent the negative impact of VASN. John Wiley & Sons, Inc. 2019-01-03 2019-04-15 /pmc/articles/PMC6590135/ /pubmed/30252131 http://dx.doi.org/10.1002/ijc.31891 Text en © 2018 The Authors. International Journal of Cancer published by John Wiley & Sons Ltd on behalf of UICC This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Molecular Cancer Biology
Yeo, Hui Ling
Fan, Tan‐Chi
Lin, Ruey‐Jen
Yu, Jyh‐Cherng
Liao, Guo‐Shiou
Chen, Eric Sheng‐Wen
Ho, Ming‐Yi
Lin, Wen‐Der
Chen, Kowa
Chen, Chein‐Hung
Hung, Jung‐Tung
Wu, Jen‐Chine
Chang, Nai‐Chuan
Chang, Margaret Dah‐Tsyr
Yu, John
Yu, Alice Lin‐Tsing
Sialylation of vasorin by ST3Gal1 facilitates TGF‐β1‐mediated tumor angiogenesis and progression
title Sialylation of vasorin by ST3Gal1 facilitates TGF‐β1‐mediated tumor angiogenesis and progression
title_full Sialylation of vasorin by ST3Gal1 facilitates TGF‐β1‐mediated tumor angiogenesis and progression
title_fullStr Sialylation of vasorin by ST3Gal1 facilitates TGF‐β1‐mediated tumor angiogenesis and progression
title_full_unstemmed Sialylation of vasorin by ST3Gal1 facilitates TGF‐β1‐mediated tumor angiogenesis and progression
title_short Sialylation of vasorin by ST3Gal1 facilitates TGF‐β1‐mediated tumor angiogenesis and progression
title_sort sialylation of vasorin by st3gal1 facilitates tgf‐β1‐mediated tumor angiogenesis and progression
topic Molecular Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6590135/
https://www.ncbi.nlm.nih.gov/pubmed/30252131
http://dx.doi.org/10.1002/ijc.31891
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