Academic literature review
Academic article
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Wang, Yuanyuan; Liu, Xiaobo; Obser, Tobias
et al. (2022). Heparan sulfate dependent binding of plasmatic von Willebrand factor to blood circulating melanoma cells attenuates metastasis. (external link)
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Missaghian, Parisa; Dierker, Tabea; Khosrowabadi, Elham
et al. (2022). A dominant negative splice variant of the heparan sulfate biosynthesis enzyme NDST1 reduces heparan sulfate sulfation. (external link)
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Ferreras, Laura; Moles, Anna; Situmorang, Gerhard R.
et al. (2019). Heparan sulfate in chronic kidney diseases: Exploring the role of 3-O-sulfation. (external link)
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Sembajwe, Lawrence Fred; Katta, Kirankumar; Grønning, Mona
et al. (2018). The exostosin family of glycosyltransferases: mRNA expression profiles and heparan sulphate structure in human breast carcinoma cell lines. (external link)
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Katta, Kirankumar; Sembajwe, Lawrence Fred; Kusche-Gullberg, Marion
(2018). Potential role for Ext1-dependent heparan sulfate in regulating P311 gene expression in A549 carcinoma cells. (external link)
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Talsma, Ditmer T.; Katta, Kirankumar; Ettema, Marieke A.B.
et al. (2018). Endothelial heparan sulfate deficiency reduces inflammation and fibrosis in murine diabetic nephropathy. (external link)
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Katta, Kirankumar; Imran, Tabasum; Busse-Wicher, Marta
et al. (2015). Reduced expression of EXTL2, a member of the exostosin (EXT) family of glycosyltransferases, in human embryonic kidney 293 cells results in longer heparan sulfate chains. (external link)
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Lu, Ning; Karlsen, Tine Veronica; Reed, Rolf K.
et al. (2014). Fibroblast α11β1 integrin regulates tensional homeostasis in fibroblast/A549 carcinoma heterospheroids. (external link)
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Alhasan, Abd A.; Spielhofer, Julia; Kusche-Gullberg, Marion
et al. (2014). Role of 6-O-sulfated heparan sulfate in chronic renal fibrosis. (external link)
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Reine, Trine M.; Kusche-Gullberg, Marion; Feta, Almir
et al. (2012). Heparan sulfate expression is affected by inflammatory stimuli in primary human endothelial cells. (external link)
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Kusche-Gullberg, Marion; Nybakken, Kent; Perrimon, Norbert
et al. (2012). Drosophila heparan sulfate, a novel design. (external link)
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Österholm, Cecilia M.; Lu, Ning; Liden, Åsa
et al. (2012). Fibroblast EXT1-levels influence tumor cell proliferation and migration in composite spheroids. (external link)
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Smeds, Emanuel; Feta, Almir; Kusche-Gullberg, Marion
(2010). Target selection of heparan sulfate hexuronic acid 2-O-sulfotransferase. (external link)
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Feta, Almir; Do, Kim Anh-Tri; Rentzsch, Fabian
et al. (2009). Molecular analysis of heparan sulfate biosynthetic enzyme machinery and characterization of heparan sulfate structure in Nematostella vectensis. (external link)
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Österholm, Cecilia M.; Barczyk, Malgorzata; Busse, Marta
et al. (2009). Mutation in the heparan sulfate biosynthesis enzyme EXT1 influences growth factor signaling and fibroblast interactions with the extracellular matrix. (external link)
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Presto, Jenny; Thuveson, Maria; Carlsson, Pernilla
et al. (2008). Heparan sulfate biosynthesis enzymes EXT1 and EXT2 affect NDST1 expression and heparan sulfate sulfation. (external link)
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Whiteford, James R; Behrends, Volker; Kirby, Hishani
et al. (2007). Syndecans promote integrin-mediated adhesion of mesenchymal cells in two distinct pathways. (external link)
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Langsdorf, Aliete; Do, Anh-Tri; Kusche-Gullberg, Marion
et al. (2007). Sulfs are regulators of growth factor signaling for satellite cell differentiation and muscle regeneration. (external link)
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Ai, Xingbin ; Kitazawa, Toshio; Do, Anh-Tri
et al. (2007). SULF1 and SULF2 regulate heparan sulfate-mediated GDNF signaling for esophageal innervation. (external link)
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Busse, Marta; Feta, Almir; Presto, Jenny
et al. (2007). Contribution of EXT1, EXT2, and EXTL3 to heparan sulfate chain elongation. (external link)
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Ledin, J; Ringvall, M; Thuveson, M
et al. (2006). Enzymatically active N-deacetylase/N-sulfotransferase-2 is present in liver but does not contribute to heparan sulfate N-sulfation. (external link)
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Ai, Xingbin ; Do, Anh-Tri; Kusche-Gullberg, Marion
et al. (2006). Substrate specificity and domain functions of extracellular heparan sulfate 6-O-endosulfatases, QSulf1 and QSulf2. (external link)
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Do, Anh-Tri; Smeds, Emanuel; Spillmann, Dorothe
et al. (2006). Overexpression of heparan sulfate 6-O-sulfotransferases in human embryonic kidney 293 cells results in increased N-acetylglucosaminyl 6-O-sulfation. (external link)
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Bodevin-Authelet, S; Kusche-Gullberg, Marion; Pummill, P
et al. (2004). Biosynthesis of hyaluronan: Direction of chain elongation. (external link)
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Xu, S; Zhao, L; Smeds, E
et al. (2004). Purification of a 75 kDa protein-N-acetylglucosamine-6-sulphatase from the organelle matrix of human neutrophils. (external link)
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Yamada, S; Busse, M; Ueno, M
et al. (2004). Embryonic fibroblasts with a gene trap mutation in Ext1 produce short heparan sulfate chains. (external link)
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Holmborn, K; Ledin, J; Smeds, E
et al. (2004). Heparan sulfate synthesized by mouse embryonic stem cells deficient in NDST1 and NDST2 is 6-O-sulfated but contains no N-sulfate groups. (external link)
Masters thesis
Doctoral dissertation
Academic chapter/article/Conference paper
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