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Reinhild Kappelhoff

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Biological Chemistry|July 17, 2004
Protease degradomics: mass spectrometry discovery of protease substrates and the CLIP-CHIP, a dedicated DNA microarray of all human proteases and inhibitorsChristopher M Overall, Eric M Tam, Reinhild Kappelhoff, et al.
Journal of Biomedical Materials Research. Part A|April 23, 2016
Novel grooved substrata stimulate macrophage fusion, CCL2 and MMP-9 secretionHaisle Moon, Clément V M Cremmel, Alina Kulpa, et al.
Journal of Bacteriology|February 28, 2012
Repression of Salmonella enterica phoP expression by small molecules from physiological bileL Caetano M Antunes, Melody Wang, Sarah K Andersen, et al.
Molecular & Cellular Proteomics : MCP|June 23, 2011
Proteomic analyses reveal an acidic prime side specificity for the astacin metalloprotease family reflected by physiological substratesChristoph Becker-Pauly, Olivier Barré, Oliver Schilling, et al.
Inflammatory Bowel Diseases|May 9, 2019
Persistent Salmonella enterica Serovar Typhimurium Infection Induces Protease Expression During Intestinal FibrosisKatrin Ehrhardt, Natalie Steck, Reinhild Kappelhoff, et al.
Pathology, Research and Practice|April 17, 2019
Proteases and their inhibitors as prognostic factors for high-grade serous ovarian cancerDominique Trudel, Luminita-Mihaela Avarvarei, Michèle Orain, et al.
Journal of Virology|May 14, 2024
Optimization of quenched fluorescent peptide substrates of SARS-CoV-2 3CL<sup>pro</sup> main protease (Mpro) from proteomic identification of P6-P6' active site specificityHugo Cesar Ramos de Jesus, Nestor Solis, Yoan Machado, et al.
Journal of Molecular Biology|November 21, 2002
Activation mechanism of pro-astacin: role of the pro-peptide, tryptic and autoproteolytic cleavage and importance of precise amino-terminal processingIrene Yiallouros, Reinhild Kappelhoff, Oliver Schilling, et al.
Nature Communications|June 22, 2018
C-terminal truncation of IFN-γ inhibits proinflammatory macrophage responses and is deficient in autoimmune diseaseAntoine Dufour, Caroline L Bellac, Ulrich Eckhard, et al.
Cell Reports|April 19, 2026
Non-canonical proteolytic activation of RNase L by SARS-CoV-2 3CL<sup>pro</sup> offsets inactivation of OAS1 p46 antiviral signalingPeter A Bell, Kaushal Baid, Christina Pan, et al.
Pageof 3

Showing results (11-20 of 26) with videos related to

Sort By:
Pageof 3
Biological Chemistry|July 17, 2004
Protease degradomics: mass spectrometry discovery of protease substrates and the CLIP-CHIP, a dedicated DNA microarray of all human proteases and inhibitorsChristopher M Overall, Eric M Tam, Reinhild Kappelhoff, et al.
Journal of Biomedical Materials Research. Part A|April 23, 2016
Novel grooved substrata stimulate macrophage fusion, CCL2 and MMP-9 secretionHaisle Moon, Clément V M Cremmel, Alina Kulpa, et al.
Journal of Bacteriology|February 28, 2012
Repression of Salmonella enterica phoP expression by small molecules from physiological bileL Caetano M Antunes, Melody Wang, Sarah K Andersen, et al.
Molecular & Cellular Proteomics : MCP|June 23, 2011
Proteomic analyses reveal an acidic prime side specificity for the astacin metalloprotease family reflected by physiological substratesChristoph Becker-Pauly, Olivier Barré, Oliver Schilling, et al.
Inflammatory Bowel Diseases|May 9, 2019
Persistent Salmonella enterica Serovar Typhimurium Infection Induces Protease Expression During Intestinal FibrosisKatrin Ehrhardt, Natalie Steck, Reinhild Kappelhoff, et al.
Pathology, Research and Practice|April 17, 2019
Proteases and their inhibitors as prognostic factors for high-grade serous ovarian cancerDominique Trudel, Luminita-Mihaela Avarvarei, Michèle Orain, et al.
Journal of Virology|May 14, 2024
Optimization of quenched fluorescent peptide substrates of SARS-CoV-2 3CL<sup>pro</sup> main protease (Mpro) from proteomic identification of P6-P6' active site specificityHugo Cesar Ramos de Jesus, Nestor Solis, Yoan Machado, et al.
Journal of Molecular Biology|November 21, 2002
Activation mechanism of pro-astacin: role of the pro-peptide, tryptic and autoproteolytic cleavage and importance of precise amino-terminal processingIrene Yiallouros, Reinhild Kappelhoff, Oliver Schilling, et al.
Nature Communications|June 22, 2018
C-terminal truncation of IFN-γ inhibits proinflammatory macrophage responses and is deficient in autoimmune diseaseAntoine Dufour, Caroline L Bellac, Ulrich Eckhard, et al.
Cell Reports|April 19, 2026
Non-canonical proteolytic activation of RNase L by SARS-CoV-2 3CL<sup>pro</sup> offsets inactivation of OAS1 p46 antiviral signalingPeter A Bell, Kaushal Baid, Christina Pan, et al.
Pageof 3