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1 ptase inhibitors (FUT-175 or MPI-0442352) or soybean trypsin inhibitor.
2 (2)-antiplasmin and was readily inhibited by soybean trypsin inhibitor.
3 of the epidermis of newborn rats, as well as soybean trypsin inhibitor.
4 ty of BG-4 is 8.6 times higher than purified soybean trypsin inhibitor.
5 one (TLCK) (85.4%), benzamidine (80.2%), and soybean trypsin inhibitor (75.6%) and partially inhibite
6                   Pretreating duodenase with soybean trypsin inhibitor abolished DNA synthesis, confi
7 Gabexate mesilate (acinar cell permeable) or soybean trypsin inhibitor (acinar cell nonpermeable) was
8                                   Feeding of soybean trypsin inhibitor and Aedes aegypti trypsin modu
9  does induce susceptibility to inhibition by soybean trypsin inhibitor and antithrombin III.
10  show for the first time a novel activity of soybean trypsin inhibitor and bovine aprotinin that they
11 e soybean-derived serine protease inhibitors soybean trypsin inhibitor and Bowman-Birk inhibitor inhi
12                                              Soybean trypsin inhibitor and phenylmethylsulphonylflour
13                                              Soybean trypsin inhibitor and succinyl-L-Ala-Ala-Pro-Phe
14               This increase was abolished by soybean trypsin inhibitor and was susceptible to carboxy
15 ovine carbonic anhydrase, alpha-lactalbumin, soybean trypsin inhibitor, and ovalbumin was separated u
16 ction with proteinaceous inhibitors, such as soybean trypsin inhibitor, basic pancreatic trypsin inhi
17                        Apical application of soybean trypsin inhibitor blocked A -> B transcytosis of
18             Active monomers are inhibited by soybean trypsin inhibitor, bovine pancreatic trypsin inh
19 at a rate similar to the ADP-ribosylation of soybean trypsin inhibitor by ExoS.
20 larly effective at blocking the chymotrypsin-soybean trypsin inhibitor complex and that the mechanism
21 s study, we demonstrate that benzamidine and soybean trypsin inhibitor-conjugated Sepharose beads, wh
22                                              Soybean trypsin inhibitor exhibited a reciprocal pattern
23 similarity places the encoded protein in the soybean trypsin-inhibitor family (Kunitz).
24 tionary phases carrying long alkyl chains or soybean trypsin inhibitor have been prepared for use in
25 -linked, high-molecular-weight derivative of soybean trypsin inhibitor (hMW-SBTI) which was unable to
26 pounds, avoralstat, PCI-27483, antipain, and soybean trypsin inhibitor, inhibited TMPRSS2 in biochemi
27 for six proteins (ovalbumin, ribonuclease A, soybean trypsin inhibitor, lysozyme, and beta-lactoglobu
28       The degrading protease is inhibited by soybean trypsin inhibitor or by low concentrations of bl
29  laminin, elastin, beta-casein, plasminogen, soybean trypsin inhibitor, or Bowman-Birk inhibitor.
30 ith Z-Pro-Prolinal or plasma kallikrein with soybean trypsin inhibitor, Pro-Phe-Arg-chloromethylketon
31                                              Soybean trypsin inhibitor reduced secretion to backgroun
32 efoil fold, similar to those found in Kunitz soybean trypsin inhibitors, ricin-like toxins, plant agg
33 g exoenzyme S)-dependent ADP-ribosylation of soybean trypsin inhibitor (SBTI) at 0.4% and of the Ras
34 stance to natural trypsin inhibitors such as soybean trypsin inhibitor (SBTI) or human pancreatic sec
35             Additionally, we found that when soybean trypsin inhibitor (SBTI), was added to rat heart
36  was a lower kcat in the ADP-ribosylation of soybean trypsin inhibitor (SBTI).
37 egrees C) in the presence and the absence of soybean trypsin inhibitor (SBTI; 100 units/g pretreated
38                 Gabexate mesilate as well as soybean trypsin inhibitor significantly decreased TAP le
39                         We also analyzed the soybean trypsin inhibitor (STI) gene family, important p
40 ide bonds affects the secondary structure of soybean trypsin inhibitor (STI).
41                                              Soybean trypsin inhibitor was added to serum before inje
42                                              Soybean trypsin inhibitor was functionalized with N-(4-p
43  by corn trypsin inhibitor and kallikrein by soybean trypsin inhibitor was necessary for abolishing R
44           Among several protease inhibitors, soybean trypsin inhibitor was one of two that inhibited
45 ) , it digested beta-casein poorly and bound soybean trypsin inhibitor with 10-fold decreased affinit