Heparan sulfate dependent binding of plasmatic von Willebrand factor to blood circulating melanoma cells attenuates metastasis

Heparan sulfate (HS), a highly negatively charged glycosaminoglycan, is ubiquitously present in all tissues and also exposed on the surface of mammalian cells. A plethora of molecules such as growth factors, cytokines or coagulation factors bear HS binding sites. Accordingly, HS controls the communi...

Full description

Saved in:
Bibliographic Details
Main Authors: Wang, Yuanyuan (Author) , Liu, Xiaobo (Author) , Obser, Tobias (Author) , Bauer, Alexander T. (Author) , Heyes, Martin (Author) , Starzonek, Sarah (Author) , Zulal, Mina (Author) , Opitz, Karena (Author) , Ott, Leonie (Author) , Riethdorf, Sabine (Author) , Lange, Tobias (Author) , Pantel, Klaus (Author) , Bendas, Gerd (Author) , Schneider, Stefan W. (Author) , Kusche-Gullberg, Marion (Author) , Gorzelanny, Christian (Author)
Format: Article (Journal)
Language:English
Published: August 2022
In: Matrix biology
Year: 2022, Volume: 111, Pages: 76-94
ISSN:1569-1802
DOI:10.1016/j.matbio.2022.06.002
Online Access:Verlag, kostenfrei, Volltext: https://doi.org/10.1016/j.matbio.2022.06.002
Verlag, kostenfrei, Volltext: https://www.sciencedirect.com/science/article/pii/S0945053X22000828
Get full text
Author Notes:Yuanyuan Wang, Xiaobo Liu, Tobias Obser, Alexander T. Bauer, Martin Heyes, Sarah Starzonek, Mina Zulal, Karena Opitz, Leonie Ott, Sabine Riethdorf, Tobias Lange, Klaus Pantel, Gerd Bendas, Stefan W. Schneider, Marion Kusche-Gullberg and Christian Gorzelanny

MARC

LEADER 00000caa a2200000 c 4500
001 1869506677
003 DE-627
005 20240307082042.0
007 cr uuu---uuuuu
008 231107s2022 xx |||||o 00| ||eng c
024 7 |a 10.1016/j.matbio.2022.06.002  |2 doi 
035 |a (DE-627)1869506677 
035 |a (DE-599)KXP1869506677 
035 |a (OCoLC)1425215523 
040 |a DE-627  |b ger  |c DE-627  |e rda 
041 |a eng 
084 |a 33  |2 sdnb 
100 1 |a Wang, Yuanyuan  |d 1988-  |e VerfasserIn  |0 (DE-588)1282309382  |0 (DE-627)1837955751  |4 aut 
245 1 0 |a Heparan sulfate dependent binding of plasmatic von Willebrand factor to blood circulating melanoma cells attenuates metastasis  |c Yuanyuan Wang, Xiaobo Liu, Tobias Obser, Alexander T. Bauer, Martin Heyes, Sarah Starzonek, Mina Zulal, Karena Opitz, Leonie Ott, Sabine Riethdorf, Tobias Lange, Klaus Pantel, Gerd Bendas, Stefan W. Schneider, Marion Kusche-Gullberg and Christian Gorzelanny 
264 1 |c August 2022 
300 |b Illustrationen 
300 |a 19 
336 |a Text  |b txt  |2 rdacontent 
337 |a Computermedien  |b c  |2 rdamedia 
338 |a Online-Ressource  |b cr  |2 rdacarrier 
500 |a Online veröffentlicht: 9 June 2022, Artikelversion: 16 June 2022 
500 |a Gesehen am 07.11.2023 
520 |a Heparan sulfate (HS), a highly negatively charged glycosaminoglycan, is ubiquitously present in all tissues and also exposed on the surface of mammalian cells. A plethora of molecules such as growth factors, cytokines or coagulation factors bear HS binding sites. Accordingly, HS controls the communication of cells with their environment and therefore numerous physiological and pathophysiological processes such as cell adhesion, migration, and cancer cell metastasis. In the present work, we found that HS exposed by blood circulating melanoma cells recruited considerable amounts of plasmatic von Willebrand factor (vWF) to the cellular surface. Analyses assisted by super-resolution microscopy indicated that HS and vWF formed a tight molecular complex. Enzymatic removal of HS or genetic engineering of the HS biosynthesis showed that a reduced length of the HS chains or complete lack of HS was associated with significantly reduced vWF encapsulation. In microfluidic experiments, mimicking a tumor-activated vascular system, we found that vWF-HS complexes prevented vascular adhesion. In line with this, single molecular force spectroscopy suggested that the vWF-HS complex promoted the repulsion of circulating cancer cells from the blood vessel wall to counteract metastasis. Experiments in wild type and vWF knockout mice confirmed that the HS-vWF complex at the melanoma cell surface attenuated hematogenous metastasis, whereas melanoma cells lacking HS evade the anti-metastatic recognition by vWF. Analysis of tissue samples obtained from melanoma patients validated that metastatic melanoma cells produce less HS. Transcriptome data further suggest that attenuated expression of HS-related genes correlate with metastases and reduced patients’ survival. In conclusion, we showed that HS-mediated binding of plasmatic vWF to the cellular surface can reduce the hematogenous spread of melanoma. Cancer cells with low HS levels evade vWF recognition and are thus prone to form metastases. Therefore, therapeutic expansion of the cancer cell exposed HS may prevent tumor progression. 
650 4 |a Circulating tumor cells 
650 4 |a Heparan sulfate 
650 4 |a Melanoma 
650 4 |a Metastasis 
650 4 |a von Willebrand factor 
700 1 |a Liu, Xiaobo  |e VerfasserIn  |4 aut 
700 1 |a Obser, Tobias  |e VerfasserIn  |4 aut 
700 1 |a Bauer, Alexander T.  |e VerfasserIn  |4 aut 
700 1 |a Heyes, Martin  |e VerfasserIn  |4 aut 
700 1 |a Starzonek, Sarah  |e VerfasserIn  |4 aut 
700 1 |a Zulal, Mina  |e VerfasserIn  |4 aut 
700 1 |a Opitz, Karena  |e VerfasserIn  |4 aut 
700 1 |a Ott, Leonie  |e VerfasserIn  |4 aut 
700 1 |a Riethdorf, Sabine  |e VerfasserIn  |4 aut 
700 1 |a Lange, Tobias  |e VerfasserIn  |4 aut 
700 1 |a Pantel, Klaus  |e VerfasserIn  |4 aut 
700 1 |a Bendas, Gerd  |e VerfasserIn  |4 aut 
700 1 |a Schneider, Stefan W.  |e VerfasserIn  |4 aut 
700 1 |a Kusche-Gullberg, Marion  |e VerfasserIn  |4 aut 
700 1 |a Gorzelanny, Christian  |e VerfasserIn  |4 aut 
773 0 8 |i Enthalten in  |t Matrix biology  |d Amsterdam [u.a.] : Elsevier, 1994  |g 111(2022) vom: Aug., Seite 76-94  |h Online-Ressource  |w (DE-627)320444074  |w (DE-600)2005263-7  |w (DE-576)259484563  |x 1569-1802  |7 nnas  |a Heparan sulfate dependent binding of plasmatic von Willebrand factor to blood circulating melanoma cells attenuates metastasis 
773 1 8 |g volume:111  |g year:2022  |g month:08  |g pages:76-94  |g extent:19  |a Heparan sulfate dependent binding of plasmatic von Willebrand factor to blood circulating melanoma cells attenuates metastasis 
856 4 0 |u https://doi.org/10.1016/j.matbio.2022.06.002  |x Verlag  |x Resolving-System  |z kostenfrei  |3 Volltext 
856 4 0 |u https://www.sciencedirect.com/science/article/pii/S0945053X22000828  |x Verlag  |z kostenfrei  |3 Volltext 
951 |a AR 
992 |a 20231107 
993 |a Article 
994 |a 2022 
998 |g 1282309382  |a Wang, Yuanyuan  |m 1282309382:Wang, Yuanyuan  |d 60000  |d 61900  |d 140000  |e 60000PW1282309382  |e 61900PW1282309382  |e 140000PW1282309382  |k 0/60000/  |k 1/60000/61900/  |k 0/140000/  |p 1  |x j 
999 |a KXP-PPN1869506677  |e 440352429X 
BIB |a Y 
SER |a journal 
JSO |a {"recId":"1869506677","type":{"media":"Online-Ressource","bibl":"article-journal"},"origin":[{"dateIssuedDisp":"August 2022","dateIssuedKey":"2022"}],"physDesc":[{"extent":"19 S.","noteIll":"Illustrationen"}],"title":[{"title":"Heparan sulfate dependent binding of plasmatic von Willebrand factor to blood circulating melanoma cells attenuates metastasis","title_sort":"Heparan sulfate dependent binding of plasmatic von Willebrand factor to blood circulating melanoma cells attenuates metastasis"}],"person":[{"display":"Wang, Yuanyuan","role":"aut","family":"Wang","roleDisplay":"VerfasserIn","given":"Yuanyuan"},{"display":"Liu, Xiaobo","role":"aut","family":"Liu","roleDisplay":"VerfasserIn","given":"Xiaobo"},{"family":"Obser","given":"Tobias","roleDisplay":"VerfasserIn","display":"Obser, Tobias","role":"aut"},{"role":"aut","display":"Bauer, Alexander T.","roleDisplay":"VerfasserIn","given":"Alexander T.","family":"Bauer"},{"roleDisplay":"VerfasserIn","given":"Martin","family":"Heyes","role":"aut","display":"Heyes, Martin"},{"display":"Starzonek, Sarah","role":"aut","family":"Starzonek","given":"Sarah","roleDisplay":"VerfasserIn"},{"display":"Zulal, Mina","role":"aut","family":"Zulal","given":"Mina","roleDisplay":"VerfasserIn"},{"given":"Karena","roleDisplay":"VerfasserIn","family":"Opitz","role":"aut","display":"Opitz, Karena"},{"given":"Leonie","roleDisplay":"VerfasserIn","family":"Ott","role":"aut","display":"Ott, Leonie"},{"role":"aut","display":"Riethdorf, Sabine","given":"Sabine","roleDisplay":"VerfasserIn","family":"Riethdorf"},{"role":"aut","display":"Lange, Tobias","given":"Tobias","roleDisplay":"VerfasserIn","family":"Lange"},{"family":"Pantel","given":"Klaus","roleDisplay":"VerfasserIn","display":"Pantel, Klaus","role":"aut"},{"role":"aut","display":"Bendas, Gerd","given":"Gerd","roleDisplay":"VerfasserIn","family":"Bendas"},{"roleDisplay":"VerfasserIn","given":"Stefan W.","family":"Schneider","role":"aut","display":"Schneider, Stefan W."},{"role":"aut","display":"Kusche-Gullberg, Marion","roleDisplay":"VerfasserIn","given":"Marion","family":"Kusche-Gullberg"},{"display":"Gorzelanny, Christian","role":"aut","family":"Gorzelanny","given":"Christian","roleDisplay":"VerfasserIn"}],"name":{"displayForm":["Yuanyuan Wang, Xiaobo Liu, Tobias Obser, Alexander T. Bauer, Martin Heyes, Sarah Starzonek, Mina Zulal, Karena Opitz, Leonie Ott, Sabine Riethdorf, Tobias Lange, Klaus Pantel, Gerd Bendas, Stefan W. Schneider, Marion Kusche-Gullberg and Christian Gorzelanny"]},"relHost":[{"type":{"media":"Online-Ressource","bibl":"periodical"},"recId":"320444074","disp":"Heparan sulfate dependent binding of plasmatic von Willebrand factor to blood circulating melanoma cells attenuates metastasisMatrix biology","origin":[{"publisher":"Elsevier","dateIssuedDisp":"1994-","publisherPlace":"Amsterdam [u.a.]","dateIssuedKey":"1994"}],"title":[{"title_sort":"Matrix biology","title":"Matrix biology","subtitle":"the official journal of the International Society for Matrix Biology"}],"physDesc":[{"extent":"Online-Ressource"}],"part":{"volume":"111","text":"111(2022) vom: Aug., Seite 76-94","extent":"19","pages":"76-94","year":"2022"},"pubHistory":["14.1994 -"],"note":["Gesehen am 11.05.23"],"id":{"zdb":["2005263-7"],"eki":["320444074"],"issn":["1569-1802"]},"language":["eng"]}],"id":{"eki":["1869506677"],"doi":["10.1016/j.matbio.2022.06.002"]},"language":["eng"],"note":["Online veröffentlicht: 9 June 2022, Artikelversion: 16 June 2022","Gesehen am 07.11.2023"]} 
SRT |a WANGYUANYUHEPARANSUL2022