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A critical role for lymphatic endothelial heparan sulfate in lymph node metastasis

BACKGROUND: Lymph node metastasis constitutes a key event in tumor progression. The molecular control of this process is poorly understood. Heparan sulfate is a linear polysaccharide consisting of unique sulfate-modified disaccharide repeats that allow the glycan to bind a variety of proteins, inclu...

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Autores principales: Yin, Xin, Truty, Jadwiga, Lawrence, Roger, Johns, Scott C, Srinivasan, R Sathish, Handel, Tracy M, Fuster, Mark M
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3019167/
https://www.ncbi.nlm.nih.gov/pubmed/21172016
http://dx.doi.org/10.1186/1476-4598-9-316
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author Yin, Xin
Truty, Jadwiga
Lawrence, Roger
Johns, Scott C
Srinivasan, R Sathish
Handel, Tracy M
Fuster, Mark M
author_facet Yin, Xin
Truty, Jadwiga
Lawrence, Roger
Johns, Scott C
Srinivasan, R Sathish
Handel, Tracy M
Fuster, Mark M
author_sort Yin, Xin
collection PubMed
description BACKGROUND: Lymph node metastasis constitutes a key event in tumor progression. The molecular control of this process is poorly understood. Heparan sulfate is a linear polysaccharide consisting of unique sulfate-modified disaccharide repeats that allow the glycan to bind a variety of proteins, including chemokines. While some chemokines may drive lymphatic trafficking of tumor cells, the functional and genetic importance of heparan sulfate as a possible mediator of chemokine actions in lymphatic metastasis has not been reported. RESULTS: We applied a loss-of-function genetic approach employing lymphatic endothelial conditional mutations in heparan sulfate biosynthesis to study the effects on tumor-lymphatic trafficking and lymph node metastasis. Lymphatic endothelial deficiency in N-deacetylase/N-sulfotransferase-1 (Ndst1), a key enzyme involved in sulfating nascent heparan sulfate chains, resulted in altered lymph node metastasis in tumor-bearing gene targeted mice. This occurred in mice harboring either a pan-endothelial Ndst1 mutation or an inducible lymphatic-endothelial specific mutation in Ndst1. In addition to a marked reduction in tumor metastases to the regional lymph nodes in mutant mice, specific immuno-localization of CCL21, a heparin-binding chemokine known to regulate leukocyte and possibly tumor-cell traffic, showed a marked reduction in its ability to associate with tumor cells in mutant lymph nodes. In vitro modified chemotaxis studies targeting heparan sulfate biosynthesis in lymphatic endothelial cells revealed that heparan sulfate secreted by lymphatic endothelium is required for CCL21-dependent directional migration of murine as well as human lung carcinoma cells toward the targeted lymphatic endothelium. Lymphatic heparan sulfate was also required for binding of CCL21 to its receptor CCR7 on tumor cells as well as the activation of migration signaling pathways in tumor cells exposed to lymphatic conditioned medium. Finally, lymphatic cell-surface heparan sulfate facilitated receptor-dependent binding and concentration of CCL21 on the lymphatic endothelium, thereby serving as a mechanism to generate lymphatic chemokine gradients. CONCLUSIONS: This work demonstrates the genetic importance of host lymphatic heparan sulfate in mediating chemokine dependent tumor-cell traffic in the lymphatic microenvironment. The impact on chemokine dependent lymphatic metastasis may guide novel therapeutic strategies.
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spelling pubmed-30191672011-01-12 A critical role for lymphatic endothelial heparan sulfate in lymph node metastasis Yin, Xin Truty, Jadwiga Lawrence, Roger Johns, Scott C Srinivasan, R Sathish Handel, Tracy M Fuster, Mark M Mol Cancer Research BACKGROUND: Lymph node metastasis constitutes a key event in tumor progression. The molecular control of this process is poorly understood. Heparan sulfate is a linear polysaccharide consisting of unique sulfate-modified disaccharide repeats that allow the glycan to bind a variety of proteins, including chemokines. While some chemokines may drive lymphatic trafficking of tumor cells, the functional and genetic importance of heparan sulfate as a possible mediator of chemokine actions in lymphatic metastasis has not been reported. RESULTS: We applied a loss-of-function genetic approach employing lymphatic endothelial conditional mutations in heparan sulfate biosynthesis to study the effects on tumor-lymphatic trafficking and lymph node metastasis. Lymphatic endothelial deficiency in N-deacetylase/N-sulfotransferase-1 (Ndst1), a key enzyme involved in sulfating nascent heparan sulfate chains, resulted in altered lymph node metastasis in tumor-bearing gene targeted mice. This occurred in mice harboring either a pan-endothelial Ndst1 mutation or an inducible lymphatic-endothelial specific mutation in Ndst1. In addition to a marked reduction in tumor metastases to the regional lymph nodes in mutant mice, specific immuno-localization of CCL21, a heparin-binding chemokine known to regulate leukocyte and possibly tumor-cell traffic, showed a marked reduction in its ability to associate with tumor cells in mutant lymph nodes. In vitro modified chemotaxis studies targeting heparan sulfate biosynthesis in lymphatic endothelial cells revealed that heparan sulfate secreted by lymphatic endothelium is required for CCL21-dependent directional migration of murine as well as human lung carcinoma cells toward the targeted lymphatic endothelium. Lymphatic heparan sulfate was also required for binding of CCL21 to its receptor CCR7 on tumor cells as well as the activation of migration signaling pathways in tumor cells exposed to lymphatic conditioned medium. Finally, lymphatic cell-surface heparan sulfate facilitated receptor-dependent binding and concentration of CCL21 on the lymphatic endothelium, thereby serving as a mechanism to generate lymphatic chemokine gradients. CONCLUSIONS: This work demonstrates the genetic importance of host lymphatic heparan sulfate in mediating chemokine dependent tumor-cell traffic in the lymphatic microenvironment. The impact on chemokine dependent lymphatic metastasis may guide novel therapeutic strategies. BioMed Central 2010-12-20 /pmc/articles/PMC3019167/ /pubmed/21172016 http://dx.doi.org/10.1186/1476-4598-9-316 Text en Copyright ©2010 Yin et al; licensee BioMed Central Ltd. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (<url>http://creativecommons.org/licenses/by/2.0</url>), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Yin, Xin
Truty, Jadwiga
Lawrence, Roger
Johns, Scott C
Srinivasan, R Sathish
Handel, Tracy M
Fuster, Mark M
A critical role for lymphatic endothelial heparan sulfate in lymph node metastasis
title A critical role for lymphatic endothelial heparan sulfate in lymph node metastasis
title_full A critical role for lymphatic endothelial heparan sulfate in lymph node metastasis
title_fullStr A critical role for lymphatic endothelial heparan sulfate in lymph node metastasis
title_full_unstemmed A critical role for lymphatic endothelial heparan sulfate in lymph node metastasis
title_short A critical role for lymphatic endothelial heparan sulfate in lymph node metastasis
title_sort critical role for lymphatic endothelial heparan sulfate in lymph node metastasis
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3019167/
https://www.ncbi.nlm.nih.gov/pubmed/21172016
http://dx.doi.org/10.1186/1476-4598-9-316
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