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Current Pharmaceutical Design|September 29, 2012
Processing and regulation mechanisms within antigen presenting cells: a possibility for therapeutic modulationTimo BursterBiomedical Reports|April 12, 2019
Cell surface cathepsin G can be used as an additional marker to distinguish T cell subsetsAdriane Penczek, Timo BursterDiabetes/Metabolism Research and Reviews|May 27, 2010
Processing and presentation of (pro)-insulin in the MHC class II pathway: the generation of antigen-based immunomodulators in the context of type 1 diabetes mellitusTimo Burster, Bernhard O BoehmPlos One|April 18, 2022
Occurrence of a novel cleavage site for cathepsin G adjacent to the polybasic sequence within the proteolytically sensitive activation loop of the SARS-CoV-2 Omicron variant: The amino acid substitution N679K and P681H of the spike proteinZhadyra Mustafa, Hubert Kalbacher, Timo BursterMolecules (Basel, Switzerland)|September 23, 2022
Variation of Proteolytic Cleavage Sites towards the N-Terminal End of the S2 Subunit of the Novel SARS-CoV-2 Omicron Sublineage BA.2.12.1Nadine Anna Schilling, Hubert Kalbacher, Timo BursterACS Omega|November 9, 2020
Application of an Activity-Based Probe to Determine Proteolytic Activity of Cell Surface Cathepsin G by Mass Cytometry Data AcquisitionFabian Gärtner, Uwe Knippschild, Timo BursterFrontiers in Chemistry|March 18, 2021
Activity-Based Probes to Utilize the Proteolytic Activity of Cathepsin G in Biological SamplesTimo Burster, Fabian Gärtner, Uwe Knippschild, et al.ACS Omega|March 22, 2021
Neutrophil Elastase and Proteinase 3 Cleavage Sites Are Adjacent to the Polybasic Sequence within the Proteolytic Sensitive Activation Loop of the SARS-CoV-2 Spike ProteinZhadyra Mustafa, Anuar Zhanapiya, Hubert Kalbacher, et al.Archivum Immunologiae Et Therapiae Experimentalis|August 21, 2020
Cathepsin G and its Dichotomous Role in Modulating Levels of MHC Class I MoleculesTimo Burster, Uwe Knippschild, Ferdinand Molnár, et al.Immunology Letters|September 27, 2016
Cell surface cathepsin G activity differs between human natural killer cell subsetsAdriane Penczek, Marcin Sienczyk, Christian Rainer Wirtz, et al.Pageof 8