Cargando…

Membrane Bound CRT Fragment Accelerates Tumor Growth of Melanoma B16 Cell In Vivo through Promoting M2 Polarization via TLR4

Calreticulin (CRT) is a major calcium-binding luminal resident protein on the endoplasmic reticulum that can also be released extracellular as well as anchored on surface of cells. Previously, we demonstrated that soluble recombinant CRT fragment 39-272 (CRT/39-272) exhibited potent immunostimulator...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Hong-Min, Zhou, Zhe, Miao, Jie, Zhu, Bo, Dai, Xiao-Qiu, Zhong, Qiao, Gong, Fang-Yuan, Gao, Xiao-Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9560857/
https://www.ncbi.nlm.nih.gov/pubmed/36249426
http://dx.doi.org/10.1155/2022/4626813
_version_ 1784807845632409600
author Wang, Hong-Min
Zhou, Zhe
Miao, Jie
Zhu, Bo
Dai, Xiao-Qiu
Zhong, Qiao
Gong, Fang-Yuan
Gao, Xiao-Ming
author_facet Wang, Hong-Min
Zhou, Zhe
Miao, Jie
Zhu, Bo
Dai, Xiao-Qiu
Zhong, Qiao
Gong, Fang-Yuan
Gao, Xiao-Ming
author_sort Wang, Hong-Min
collection PubMed
description Calreticulin (CRT) is a major calcium-binding luminal resident protein on the endoplasmic reticulum that can also be released extracellular as well as anchored on surface of cells. Previously, we demonstrated that soluble recombinant CRT fragment 39-272 (CRT/39-272) exhibited potent immunostimulatory effects as well as immunoregulation effects on immune cells. Here, we constructed stable B16 melanoma cell lines expressing recombinant CRT/39-272 on the membrane (B16-tmCRT/39-272) to investigate the roles of cell surface CRT on tumor progression. We found that B16-tmCRT/39-272 cells subcutaneously inoculated into C57BL/6 mice exhibited stronger tumorigenicity than the B16-EGFP control cells. The tumor associated macrophages infiltrated in tumors were mainly M2 phenotype. Regulatory T cells (Tregs) were also expanded more in bearing mice. Consistent with the in vivo results, B16-tmCRT/39-272 promoted macrophage polarization toward F4/80(+)CD206(+) M2 macrophages and promoted transforming growth factor beta (TGF-β) secretion in vitro, which could promote naïve CD4(+)T cell differentiation into Tregs. These results imply that the tmCRT/39-272 could accelerate tumor development by enhancing M2 macrophage polarization to induce TGF-β secretion, and then promoted Treg differentiation in the tumor microenvironment. Our data may provide useful clues for better understanding of the potentiating roles of CRT in tumorigenesis.
format Online
Article
Text
id pubmed-9560857
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-95608572022-10-14 Membrane Bound CRT Fragment Accelerates Tumor Growth of Melanoma B16 Cell In Vivo through Promoting M2 Polarization via TLR4 Wang, Hong-Min Zhou, Zhe Miao, Jie Zhu, Bo Dai, Xiao-Qiu Zhong, Qiao Gong, Fang-Yuan Gao, Xiao-Ming J Immunol Res Research Article Calreticulin (CRT) is a major calcium-binding luminal resident protein on the endoplasmic reticulum that can also be released extracellular as well as anchored on surface of cells. Previously, we demonstrated that soluble recombinant CRT fragment 39-272 (CRT/39-272) exhibited potent immunostimulatory effects as well as immunoregulation effects on immune cells. Here, we constructed stable B16 melanoma cell lines expressing recombinant CRT/39-272 on the membrane (B16-tmCRT/39-272) to investigate the roles of cell surface CRT on tumor progression. We found that B16-tmCRT/39-272 cells subcutaneously inoculated into C57BL/6 mice exhibited stronger tumorigenicity than the B16-EGFP control cells. The tumor associated macrophages infiltrated in tumors were mainly M2 phenotype. Regulatory T cells (Tregs) were also expanded more in bearing mice. Consistent with the in vivo results, B16-tmCRT/39-272 promoted macrophage polarization toward F4/80(+)CD206(+) M2 macrophages and promoted transforming growth factor beta (TGF-β) secretion in vitro, which could promote naïve CD4(+)T cell differentiation into Tregs. These results imply that the tmCRT/39-272 could accelerate tumor development by enhancing M2 macrophage polarization to induce TGF-β secretion, and then promoted Treg differentiation in the tumor microenvironment. Our data may provide useful clues for better understanding of the potentiating roles of CRT in tumorigenesis. Hindawi 2022-10-06 /pmc/articles/PMC9560857/ /pubmed/36249426 http://dx.doi.org/10.1155/2022/4626813 Text en Copyright © 2022 Hong-Min Wang et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Wang, Hong-Min
Zhou, Zhe
Miao, Jie
Zhu, Bo
Dai, Xiao-Qiu
Zhong, Qiao
Gong, Fang-Yuan
Gao, Xiao-Ming
Membrane Bound CRT Fragment Accelerates Tumor Growth of Melanoma B16 Cell In Vivo through Promoting M2 Polarization via TLR4
title Membrane Bound CRT Fragment Accelerates Tumor Growth of Melanoma B16 Cell In Vivo through Promoting M2 Polarization via TLR4
title_full Membrane Bound CRT Fragment Accelerates Tumor Growth of Melanoma B16 Cell In Vivo through Promoting M2 Polarization via TLR4
title_fullStr Membrane Bound CRT Fragment Accelerates Tumor Growth of Melanoma B16 Cell In Vivo through Promoting M2 Polarization via TLR4
title_full_unstemmed Membrane Bound CRT Fragment Accelerates Tumor Growth of Melanoma B16 Cell In Vivo through Promoting M2 Polarization via TLR4
title_short Membrane Bound CRT Fragment Accelerates Tumor Growth of Melanoma B16 Cell In Vivo through Promoting M2 Polarization via TLR4
title_sort membrane bound crt fragment accelerates tumor growth of melanoma b16 cell in vivo through promoting m2 polarization via tlr4
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9560857/
https://www.ncbi.nlm.nih.gov/pubmed/36249426
http://dx.doi.org/10.1155/2022/4626813
work_keys_str_mv AT wanghongmin membraneboundcrtfragmentacceleratestumorgrowthofmelanomab16cellinvivothroughpromotingm2polarizationviatlr4
AT zhouzhe membraneboundcrtfragmentacceleratestumorgrowthofmelanomab16cellinvivothroughpromotingm2polarizationviatlr4
AT miaojie membraneboundcrtfragmentacceleratestumorgrowthofmelanomab16cellinvivothroughpromotingm2polarizationviatlr4
AT zhubo membraneboundcrtfragmentacceleratestumorgrowthofmelanomab16cellinvivothroughpromotingm2polarizationviatlr4
AT daixiaoqiu membraneboundcrtfragmentacceleratestumorgrowthofmelanomab16cellinvivothroughpromotingm2polarizationviatlr4
AT zhongqiao membraneboundcrtfragmentacceleratestumorgrowthofmelanomab16cellinvivothroughpromotingm2polarizationviatlr4
AT gongfangyuan membraneboundcrtfragmentacceleratestumorgrowthofmelanomab16cellinvivothroughpromotingm2polarizationviatlr4
AT gaoxiaoming membraneboundcrtfragmentacceleratestumorgrowthofmelanomab16cellinvivothroughpromotingm2polarizationviatlr4