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1 proteases, caspase-3 and enteropeptidase (or enterokinase).
2 e sites in OPN for the proteases thrombin or enterokinase.
3 ied to near homogeneity after digestion with enterokinase.
4 xclusive neuro-axonal expression of Pavlov's enterokinase.
5 hen the GST tag is removed by treatment with enterokinase.
6 proenzyme capable of in vitro activation by enterokinase.
8 eavage occurs within a full SEA (sea urchin, enterokinase, agrin) module with traits matching those a
10 th proteoglycans possess SEA (sperm protein, enterokinase and agrin) domains, which may support prote
11 nal anchor, a SEA (sea urchin sperm protein, enterokinase, and agrin) domain, and a C-terminal serine
12 of trypsin generated by autoactivation or by enterokinase at pH 8.0 in 1 mm Ca2+- conditions that wer
14 prising human alpha lactalbumin joined by an enterokinase cleavable linker to sCT was directed to the
19 ain that produced a VacA toxin containing an enterokinase cleavage site located between the p-33 and
20 al amino acids of mature PSGL-1 linked to an enterokinase cleavage site that, in turn, is linked to h
21 of the FLAG octapeptide by proteolysis with enterokinase converted the soluble molecule to one that
24 of only the protease domain and contains an enterokinase (EK) recognition sequence at the conserved
27 is study describes the discovery of Pavlov's enterokinase in the human brain, a novel neuronal proteo
34 soluble corin, EKsolCorin, that contains an enterokinase recognition sequence at the activation clea
35 th recombinant BiP engineered to contain two enterokinase sites; one site is located after an N-termi