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The Journal of Biological Chemistry|July 24, 2015
Structural Aspects of N-Glycosylations and the C-terminal Region in Human Glypican-1Wael Awad, Barbara Adamczyk, Jessica Örnros, et al.
Molecular Cancer Therapeutics|February 20, 2007
HIV-Tat protein transduction domain specifically attenuates growth of polyamine deprived tumor cellsKatrin Mani, Staffan Sandgren, Johanna Lilja, et al.
Glycoconjugate Journal|March 30, 2016
Disubstituted naphthyl β-D-xylopyranosides: Synthesis, GAG priming, and histone acetyltransferase (HAT) inhibitionKarin Thorsheim, Andrea Persson, Anna Siegbahn, et al.
The Journal of Biological Chemistry|September 13, 2002
Nitric oxide-dependent processing of heparan sulfate in recycling S-nitrosylated glypican-1 takes place in caveolin-1-containing endosomesFang Cheng, Katrin Mani, Jacob van den Born, et al.
Acta Crystallographica. Section D, Biological Crystallography|December 7, 2013
Improvements in the order, isotropy and electron density of glypican-1 crystals by controlled dehydrationWael Awad, Gabriel Svensson Birkedal, Marjolein M G M Thunnissen, et al.
Bioorganic & Medicinal Chemistry|May 31, 2011
Synthesis, conformation and biology of naphthoxylosidesAnna Siegbahn, Ulrika Aili, Agata Ochocinska, et al.
Glycobiology|March 27, 2004
The heparan sulfate-specific epitope 10E4 is NO-sensitive and partly inaccessible in glypican-1Katrin Mani, Fang Cheng, Staffan Sandgren, et al.
The Journal of Biological Chemistry|September 16, 2003
Glypican-1 is a vehicle for polyamine uptake in mammalian cells: a pivital role for nitrosothiol-derived nitric oxideMattias Belting, Katrin Mani, Mats Jönsson, et al.
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