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Items: 1 to 20 of 28


TMPRSS2 and MSPL Facilitate Trypsin-Independent Porcine Epidemic Diarrhea Virus Replication in Vero Cells.

Shi W, Fan W, Bai J, Tang Y, Wang L, Jiang Y, Tang L, Liu M, Cui W, Xu Y, Li Y.

Viruses. 2017 May 18;9(5). pii: E114. doi: 10.3390/v9050114.


Serum Trypsinogen Levels in Type 1 Diabetes.

Li X, Campbell-Thompson M, Wasserfall CH, McGrail K, Posgai A, Schultz AR, Brusko TM, Shuster J, Liang F, Muir A, Schatz D, Haller MJ, Atkinson MA.

Diabetes Care. 2017 Apr;40(4):577-582. doi: 10.2337/dc16-1774. Epub 2017 Jan 23.


Drug-induced acute pancreatitis: a review.

Jones MR, Hall OM, Kaye AM, Kaye AD.

Ochsner J. 2015 Spring;15(1):45-51. Review.


Myoinhibitory peptide regulates feeding in the marine annelid Platynereis.

Williams EA, Conzelmann M, Jékely G.

Front Zool. 2015 Jan 7;12(1):1. doi: 10.1186/s12983-014-0093-6. eCollection 2015.


Distinct roles of N-glycosylation at different sites of corin in cell membrane targeting and ectodomain shedding.

Wang H, Zhou T, Peng J, Xu P, Dong N, Chen S, Wu Q.

J Biol Chem. 2015 Jan 16;290(3):1654-63. doi: 10.1074/jbc.M114.606442. Epub 2014 Dec 1.


Cleavage specificity analysis of six type II transmembrane serine proteases (TTSPs) using PICS with proteome-derived peptide libraries.

Barré O, Dufour A, Eckhard U, Kappelhoff R, Béliveau F, Leduc R, Overall CM.

PLoS One. 2014 Sep 11;9(9):e105984. doi: 10.1371/journal.pone.0105984. eCollection 2014.


Membrane Proteins Involved in Epithelial-Mesenchymal Transition and Tumor Invasion: Studies on TMPRSS4 and TM4SF5.

Kim S, Lee JW.

Genomics Inform. 2014 Mar;12(1):12-20. doi: 10.5808/GI.2014.12.1.12. Epub 2014 Mar 31. Review.


Structure basis for the unique specificity of medaka enteropeptidase light chain.

Xu J, Hu S, Wang X, Zhao Z, Zhang X, Wang H, Zhang D, Guo Y.

Protein Cell. 2014 Mar;5(3):178-81. doi: 10.1007/s13238-013-0008-x. No abstract available.


Pyrosequencing of Haliotis diversicolor transcriptomes: insights into early developmental molluscan gene expression.

Huang ZX, Chen ZS, Ke CH, Zhao J, You WW, Zhang J, Dong WT, Chen J.

PLoS One. 2012;7(12):e51279. doi: 10.1371/journal.pone.0051279. Epub 2012 Dec 7.


Enteropeptidase: a gene associated with a starvation human phenotype and a novel target for obesity treatment.

Braud S, Ciufolini MA, Harosh I.

PLoS One. 2012;7(11):e49612. doi: 10.1371/journal.pone.0049612. Epub 2012 Nov 21.


Corin in clinical laboratory diagnostics.

Dong N, Chen S, Wang W, Zhou Y, Wu Q.

Clin Chim Acta. 2012 Feb 18;413(3-4):378-83. doi: 10.1016/j.cca.2011.10.032. Epub 2011 Nov 7. Review.


Membrane-anchored serine proteases in health and disease.

Antalis TM, Bugge TH, Wu Q.

Prog Mol Biol Transl Sci. 2011;99:1-50. doi: 10.1016/B978-0-12-385504-6.00001-4. Review.


Pre-expression of a sulfhydryl oxidase significantly increases the yields of eukaryotic disulfide bond containing proteins expressed in the cytoplasm of E.coli.

Nguyen VD, Hatahet F, Salo KE, Enlund E, Zhang C, Ruddock LW.

Microb Cell Fact. 2011 Jan 7;10:1. doi: 10.1186/1475-2859-10-1.


Matriptase initiates activation of epidermal pro-kallikrein and disease onset in a mouse model of Netherton syndrome.

Sales KU, Masedunskas A, Bey AL, Rasmussen AL, Weigert R, List K, Szabo R, Overbeek PA, Bugge TH.

Nat Genet. 2010 Aug;42(8):676-83. doi: 10.1038/ng.629. Epub 2010 Jul 25.


The cutting edge: membrane-anchored serine protease activities in the pericellular microenvironment.

Antalis TM, Buzza MS, Hodge KM, Hooper JD, Netzel-Arnett S.

Biochem J. 2010 Jun 15;428(3):325-46. doi: 10.1042/BJ20100046. Review.


Plasma soluble corin in patients with heart failure.

Dong N, Chen S, Yang J, He L, Liu P, Zheng D, Li L, Zhou Y, Ruan C, Plow E, Wu Q.

Circ Heart Fail. 2010 Mar;3(2):207-11. doi: 10.1161/CIRCHEARTFAILURE.109.903849. Epub 2010 Jan 8.


Matriptase-2 (TMPRSS6): a proteolytic regulator of iron homeostasis.

Ramsay AJ, Hooper JD, Folgueras AR, Velasco G, López-Otín C.

Haematologica. 2009 Jun;94(6):840-9. doi: 10.3324/haematol.2008.001867. Epub 2009 Apr 18. Review.


Prosegment of tripeptidyl peptidase I is a potent, slow-binding inhibitor of its cognate enzyme.

Golabek AA, Dolzhanskaya N, Walus M, Wisniewski KE, Kida E.

J Biol Chem. 2008 Jun 13;283(24):16497-504. doi: 10.1074/jbc.M800458200. Epub 2008 Apr 14.


Specificity of the medaka enteropeptidase serine protease and its usefulness as a biotechnological tool for fusion-protein cleavage.

Ogiwara K, Takahashi T.

Proc Natl Acad Sci U S A. 2007 Apr 24;104(17):7021-6. Epub 2007 Apr 16.

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