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Structural and functional relationship of Cassia obtusifolia trypsin inhibitor to understand its digestive resistance against Pieris rapae
- Source :
- International Journal of Biological Macromolecules. 148:908-920
- Publication Year :
- 2020
- Publisher :
- Elsevier BV, 2020.
-
Abstract
- Although digestive resistance of Kunitz protease inhibitors has been reported extensively, the molecular mechanism is not well established. In the present study, the first X-ray structure of Cassia obtusifolia trypsin inhibitor (COTI), a member of Kunitz protease inhibitors, was solved at a resolution of 1.9 Å. The structure adopted a classic β-trefoil fold with the inhibitory loop protruding from the hydrophobic core. The role of Phe139, a unique residue in Kunitz protease inhibitors, and Arg63 in the COTI structure was verified by F139A and R63E mutants. COTI was a specific inhibitor of bovine trypsin and the result was also verified by COTI-trypsin complex formation. Meanwhile, COTI showed equivalent inhibitory activity with that of soybean trypsin inhibitor against bovine trypsin and midgut trypsin from Pieris rapae. The F139 and R63E mutants further indicated that inhibitory specificity and efficiency of COTI were closely related to the global framework, the conformation and the amino acid composition of reactive loop. Finally, a midgut trypsin from P. rapae (PrSP40), which might be involve in the food digestion, was proposed to be a potential target of COTI and might be a promising target for future crop-protection strategy. The results supported the digestive resistance of COTI.
- Subjects :
- Models, Molecular
Protein Conformation
Trypsin inhibitor
medicine.medical_treatment
Mutant
Cassia
Pieris rapae
02 engineering and technology
Biochemistry
03 medical and health sciences
Structural Biology
medicine
Animals
Trypsin
Amino Acid Sequence
Molecular Biology
Plant Proteins
030304 developmental biology
0303 health sciences
Binding Sites
Protease
biology
Kunitz STI protease inhibitor
Plant Extracts
Chemistry
Midgut
General Medicine
021001 nanoscience & nanotechnology
biology.organism_classification
Mutation
Cattle
Digestion
Soybeans
Crystallization
Trypsin Inhibitors
0210 nano-technology
Butterflies
Protein Binding
medicine.drug
Subjects
Details
- ISSN :
- 01418130
- Volume :
- 148
- Database :
- OpenAIRE
- Journal :
- International Journal of Biological Macromolecules
- Accession number :
- edsair.doi.dedup.....cc4d6e1c19f153e30e70d1eab27161bd
- Full Text :
- https://doi.org/10.1016/j.ijbiomac.2020.01.193