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Matrix Biology : Journal of the International Society for Matrix Biology|September 15, 2009
Specific processing of tenascin-C by the metalloprotease meprinbeta neutralizes its inhibition of cell spreadingDaniel Ambort, Florence Brellier, Christoph Becker-Pauly, et al.
FEBS Letters|May 9, 2007
Evidence of native starch degradation with human small intestinal maltase-glucoamylase (recombinant)Zihua Ao, Roberto Quezada-Calvillo, Lyann Sim, et al.
The Biochemical Journal|November 5, 2003
Human meprin alpha and beta homo-oligomers: cleavage of basement membrane proteins and sensitivity to metalloprotease inhibitorsMarkus-N Kruse, Christoph Becker, Daniel Lottaz, et al.
The Journal of Biological Chemistry|October 19, 2005
A novel type of detergent-resistant membranes may contribute to an early protein sorting event in epithelial cellsMarwan Alfalah, Gabi Wetzel, Ina Fischer, et al.
Biological Chemistry|June 24, 2003
Differences in the activation mechanism between the alpha and beta subunits of human meprinChristoph Becker, Markus-N Kruse, Kristina A Slotty, et al.
Journal of Pediatric Gastroenterology and Nutrition|October 24, 2002
Congenital maltase-glucoamylase deficiency associated with lactase and sucrase deficienciesBuford L Nichols, Stephen E Avery, Wikrom Karnsakul, et al.
Proceedings of the National Academy of Sciences of the United States of America|September 19, 2012
Structural basis for the sheddase function of human meprin β metalloproteinase at the plasma membraneJoan L Arolas, Claudia Broder, Tamara Jefferson, et al.
The Journal of Nutrition|February 6, 2009
Mucosal maltase-glucoamylase plays a crucial role in starch digestion and prandial glucose homeostasis of miceBuford L Nichols, Roberto Quezada-Calvillo, Claudia C Robayo-Torres, et al.
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