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The Journal of Biological Chemistry|January 30, 2014
Meprin metalloproteases inactivate interleukin 6Timothy R Keiffer, Judith S BondMicroorganisms|October 23, 2021
Recent Advances in Our Understanding of the Infectious Entry Pathway of Human Papillomavirus Type 16Timothy R Keiffer, Sarah Soorya, Martin J SappThe Journal of Biological Chemistry|February 3, 2019
Proteases: History, discovery, and roles in health and diseaseJudith S BondThe Journal of Biological Chemistry|November 21, 2020
To be there when the picture is being paintedJudith S BondProteins|May 18, 2006
Amino acid substitutions affecting protein dynamics in eglin C do not affect heat capacity change upon unfoldingAlexey V Gribenko, Timothy R Keiffer, George I MakhatadzeThe Journal of Biological Chemistry|September 13, 2008
Prointerleukin-18 is activated by meprin beta in vitro and in vivo in intestinal inflammationSanjita Banerjee, Judith S BondMsphere|December 17, 2020
Interactions of the Nipah Virus P, V, and W Proteins across the STAT Family of Transcription FactorsTimothy R Keiffer, Michael J Ciancanelli, Megan R Edwards, et al.The Journal of Biological Chemistry|June 10, 2004
Transport of meprin subunits through the secretory pathway: role of the transmembrane and cytoplasmic domains and oligomerizationJeremy A Hengst, Judith S BondJournal of Virology|June 2, 2017
Human Papillomavirus Major Capsid Protein L1 Remains Associated with the Incoming Viral Genome throughout the Entry ProcessStephen DiGiuseppe, Malgorzata Bienkowska-Haba, Lucile G M Guion, et al.Experimental Hematology|December 27, 2008
Disruption of the meprin alpha and beta genes in mice alters homeostasis of monocytes and natural killer cellsQi Sun, Hong-Jian Jin, Judith S BondPageof 5