Many plant proteinase inhibitors have lysine at the P1 position, presumably to avoid hydrolysis by insect trypsins. Lepidopteran trypsins appear to have adapted to resist proteinase inhibitors through increased inhibitor hydrolysis and decreased binding to inhibitor hydrophilic reactive sites. Lepidopteran digestive trypsins prefer lysine at the P1 position and have substrate binding subsites more hydrophobic than trypsins from insects in other orders. All available sequences of sensitive and inhibitor-insensitive insect trypsins were aligned with porcine trypsin, for which interactions with Kunitz and Bowman-Birk inhibitor are known. After discounting conserved positions and positions not typical of sensitive or insensitive trypsins, the f...
Kunitz-type trypsin inhibitors bind to the active pocket of trypsin causing its inhibition. Plant Ku...
A novel trypsin inhibitor (PFTI) was isolated from Plathymenia foliolosa (Benth.) seeds by gel filtr...
Peptidase inhibitors (PIs) are essential proteins involved in plant resistance to herbivorous insect...
Trypsins have high sequence similarity, although the responses of insect trypsins to chemical and na...
Insect chymotrypsins are distinctively sensitive to plant protein inhibitors, suggesting that they d...
Serine proteases are considered the main class of protein digestive enzymes present in the midgut of...
Plants produce a variety of proteinase inhibitors (PIs) that have a major function in defense agains...
Proteinase inhibitors are among the most promising candidates for expression by transgenic plants an...
Pest insects such as Helicoverpa spp. frequently feed on plants expressing protease inhibitors. Appa...
International audiencePrevious studies have shown that the trypsin inhibitors LMPI-1, LMPI-3 and SGT...
International audiencePMP-D2 and HI, two peptides from Locusta migratoria, were shown to belong to t...
Protease inhibitors mediate a natural form of plant defence against insects, by interfering with the...
Plants synthesize a variety of molecules, including proteinaceous proteinase inhibitors, to defend t...
A novel trypsin inhibitor (PFTI) was isolated from Plathymenia foliolosa (Benth.) seeds by gel filtr...
Because food proteins are crucial for insect survival, growth, and fecundity, enzymes involved in...
Kunitz-type trypsin inhibitors bind to the active pocket of trypsin causing its inhibition. Plant Ku...
A novel trypsin inhibitor (PFTI) was isolated from Plathymenia foliolosa (Benth.) seeds by gel filtr...
Peptidase inhibitors (PIs) are essential proteins involved in plant resistance to herbivorous insect...
Trypsins have high sequence similarity, although the responses of insect trypsins to chemical and na...
Insect chymotrypsins are distinctively sensitive to plant protein inhibitors, suggesting that they d...
Serine proteases are considered the main class of protein digestive enzymes present in the midgut of...
Plants produce a variety of proteinase inhibitors (PIs) that have a major function in defense agains...
Proteinase inhibitors are among the most promising candidates for expression by transgenic plants an...
Pest insects such as Helicoverpa spp. frequently feed on plants expressing protease inhibitors. Appa...
International audiencePrevious studies have shown that the trypsin inhibitors LMPI-1, LMPI-3 and SGT...
International audiencePMP-D2 and HI, two peptides from Locusta migratoria, were shown to belong to t...
Protease inhibitors mediate a natural form of plant defence against insects, by interfering with the...
Plants synthesize a variety of molecules, including proteinaceous proteinase inhibitors, to defend t...
A novel trypsin inhibitor (PFTI) was isolated from Plathymenia foliolosa (Benth.) seeds by gel filtr...
Because food proteins are crucial for insect survival, growth, and fecundity, enzymes involved in...
Kunitz-type trypsin inhibitors bind to the active pocket of trypsin causing its inhibition. Plant Ku...
A novel trypsin inhibitor (PFTI) was isolated from Plathymenia foliolosa (Benth.) seeds by gel filtr...
Peptidase inhibitors (PIs) are essential proteins involved in plant resistance to herbivorous insect...