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Structure of Aedes aegypti carboxypeptidase <scp>B1</scp> ‐inhibitor complex uncover the disparity between mosquito and non‐mosquito insect carboxypeptidase inhibition mechanism
- Source :
- Protein Sci
- Publication Year :
- 2021
- Publisher :
- Wiley, 2021.
-
Abstract
- Metallocarboxypeptidases (MCPs) in the mosquito midgut play crucial roles in infection, as well as in mosquito dietary digestion, reproduction, and development. MCPs are also part of the digestive system of plant-feeding insects, representing key targets for inhibitor development against mosquitoes/mosquito-borne pathogens or as antifeedant molecules against plant-feeding insects. Notably, some non-mosquito insect B-type MCPs are primarily insensitive to plant protease inhibitors such as the potato carboxypeptidase inhibitor (PCI; MW 4-kDa), an inhibitor explored for cancer treatment and insecticide design. Here, we report the crystal structure of Ae. aegypti carboxypeptidase-B1 (CPBAe1)-PCI complex and compared the binding with that of PCI-insensitive CPBs. We show that PCI accommodation is determined by key differences in the active-site regions of MCPs. In particular, the loop regions α6-α7 (Leu242 -Ser250 ) and β8-α8 (Pro269 -Pro280 ) of CPBAe1 are replaced by α-helices in PCI-insensitive insect H.zea CPBHz. These α-helices protrude into the active-site pocket of CPBHz, restricting PCI insertion and rendering the enzyme insensitive. We further compared our structure with the only other PCI complex available, bovine CPA1-PCI. The potency of PCI against CPBAe1 (Ki = 14.7 nM) is marginally less than that of bovine CPA1 (Ki = 5 nM). Structurally, the above loop regions that accommodate PCI binding in CPBAe1 are similar to that of bovine CPA1, although observed changes in proteases residues that interact with PCI could account for the differences in affinity. Our findings suggest that PCI sensitivity is largely dictated by structural interference, which broadens our understanding of carboxypeptidase inhibition as a mosquito population/parasite control strategy. This article is protected by copyright. All rights reserved.
- Subjects :
- Models, Molecular
Protein Conformation, alpha-Helical
Proteases
Carboxypeptidases A
Full‐Length Papers
medicine.medical_treatment
Genetic Vectors
Gene Expression
Aedes aegypti
Crystallography, X-Ray
Biochemistry
Substrate Specificity
Species Specificity
Aedes
Catalytic Domain
Escherichia coli
medicine
Animals
Protease Inhibitors
Protein Interaction Domains and Motifs
Amino Acid Sequence
cardiovascular diseases
Cloning, Molecular
Molecular Biology
chemistry.chemical_classification
Protease
Sequence Homology, Amino Acid
biology
Chemistry
fungi
Midgut
biology.organism_classification
Carboxypeptidase
Carboxypeptidase B
Recombinant Proteins
Potato carboxypeptidase inhibitor
Kinetics
surgical procedures, operative
Enzyme
Conventional PCI
biology.protein
Insect Proteins
Cattle
Protein Conformation, beta-Strand
Sequence Alignment
Protein Binding
Subjects
Details
- ISSN :
- 1469896X and 09618368
- Volume :
- 30
- Database :
- OpenAIRE
- Journal :
- Protein Science
- Accession number :
- edsair.doi.dedup.....38d09c2c2b8f33d6fc68985426073ee2
- Full Text :
- https://doi.org/10.1002/pro.4212