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1.
Anal Biochem ; 567: 45-50, 2019 02 15.
Article in English | MEDLINE | ID: mdl-30528915

ABSTRACT

A method is described for the direct detection of unstable cysteine peptidase activity in polyacrylamide gels after native electrophoresis using new selective fluorogenic peptide substrates, pyroglutamyl-phenylalanyl-alanyl-4-amino-7-methylcoumaride (Glp-Phe-Ala-AMC) and pyroglutamyl-phenylalanyl-alanyl-4-amino-7-trifluoromethyl-coumaride (Glp-Phe-Ala-AFC). The detection limit of the model enzyme papain was 17 pmol (0.29 µg) for Glp-Phe-Ala-AMC and 43 pmol (0.74 µg) for Glp-Phe-Ala-AFC, with increased sensitivity and selectivity compared to the traditional method of protein determination with Coomassie G-250 staining or detection of activity using chromogenic substrates. Using this method, we easily identified the target digestive peptidases of Tenebrio molitor larvae by matrix assisted laser desorption/ionization time of flight mass spectrometry (MALDI-TOF MS) analysis. The method offers simplicity, high sensitivity, and selectivity compared to traditional methods for improved identification of unstable cysteine peptidases in multi-component biological samples.


Subject(s)
Cysteine Proteases/analysis , Fluorescent Dyes/chemistry , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization/methods , Amino Acid Sequence , Animals , Cysteine Proteases/metabolism , Fluorescent Dyes/metabolism , Larva/enzymology , Sequence Alignment , Substrate Specificity , Tenebrio/enzymology , Tenebrio/growth & development
2.
Anal Biochem ; 449: 179-87, 2014 Mar 15.
Article in English | MEDLINE | ID: mdl-24388866

ABSTRACT

This study describes the design, synthesis, and use of selective peptide substrates for cysteine peptidases of the C1 papain family, important in many biological processes. The structure of the newly synthesized substrates is Glp-Xaa-Ala-Y (where Glp=pyroglutamyl; Xaa=Phe or Val; and Y=pNA [p-nitroanilide], AMC [4-amino-7-methylcoumaride], or AFC [4-amino-7-trifluoromethyl-coumaride]). Substrates were synthesized enzymatically to guarantee selectivity of the reaction and optical purity of the target compounds, simplifying the scheme of synthesis and isolation of products. The hydrolysis of the synthesized substrates was evaluated by C1 cysteine peptidases from different organisms and with different functions, including plant enzymes papain, bromelain, ficin, and mammalian lysosomal cathepsins B and L. The new substrates were selective for C1 cysteine peptidases and were not hydrolyzed by serine, aspartic, or metallo peptidases. We demonstrated an application of the selectivity of the synthesized substrates during the chromatographic separation of a multicomponent set of digestive peptidases from a beetle, Tenebrio molitor. Used in combination with the cysteine peptidase inhibitor E-64, these substrates were able to differentiate cysteine peptidases from peptidases of other classes in midgut extracts from T. molitor larvae and larvae of the genus Tribolium; thus, they are useful in the analysis of complex mixtures containing peptidases from different classes.


Subject(s)
Cysteine Proteases/metabolism , Enzyme Assays/methods , Fluorescent Dyes/metabolism , Peptides/metabolism , Tenebrio/enzymology , Animals , Cysteine Proteases/isolation & purification , Fluorescent Dyes/analysis , Hydrolysis , Models, Molecular , Peptides/chemistry , Substrate Specificity , Tenebrio/metabolism
3.
Insect Biochem Mol Biol ; 43(6): 501-9, 2013 Jun.
Article in English | MEDLINE | ID: mdl-23499933

ABSTRACT

Prolyl carboxypeptidase (PRCP) is a lysosomal proline specific serine peptidase that also plays a vital role in the regulation of physiological processes in mammals. In this report, we isolate and characterize the first PRCP in an insect. PRCP was purified from the anterior midgut of larvae of a stored product pest, Tenebrio molitor, using a three-step chromatography strategy, and it was determined that the purified enzyme was a dimer. The cDNA of PRCP was cloned and sequenced, and the predicted protein was identical to the proteomic sequences of the purified enzyme. The substrate specificity and kinetic parameters of the enzyme were determined. The T. molitor PRCP participates in the hydrolysis of the insect's major dietary proteins, gliadins, and is the first PRCP to be ascribed a digestive function. Our collective data suggest that the evolutionary enrichment of the digestive peptidase complex in insects with an area of acidic to neutral pH in the midgut is a result of the incorporation of lysosomal peptidases, including PRCP.


Subject(s)
Carboxypeptidases/isolation & purification , Digestive System/enzymology , Prolyl Hydroxylases/chemistry , Tenebrio/enzymology , Amino Acid Sequence , Animals , Carboxypeptidases/chemistry , Carboxypeptidases/genetics , Hydrolysis , Larva/enzymology , Larva/genetics , Molecular Sequence Data , Prolyl Hydroxylases/genetics , Prolyl Hydroxylases/isolation & purification , Substrate Specificity , Tenebrio/genetics
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