Literature DB >> 16933280

Specificity of an extracellular proteinase from Conidiobolus coronatus and its inhibition by an inhibitor from insect hemolymph.

Jacek Bania1, Jaroslaw Samborski, Mieczyslawa Bogus, Antoni Polanowski.   

Abstract

The relatively little-investigated entomopathogen Conidiobolus coronatus secretes several proteinases into culture broth. Using a combination of ion-exchange and size-exclusion chromatography, we purified to homogeneity a serine proteinase of Mr 30,000-32,000, as ascertained by SDS-PAGE. The purified enzyme showed subtilisin-like activity. It very effectively hydrolyzed N-Suc-Ala(2)-Pro-Phe-pNa with a Km-1.36 x 10(-4) M and Kcat-24 s(-1), and N-Suc-Ala(2)-Pro-Leu-pNa with Km-6.65 x 10(-4) M and Kcat-11 s(-1). The specificity index k(cat)/K(m) for the tested substrates was calculated to be 176,340 s(-1) M(-1) and 17,030 s(-1) M(-1), respectively. Using oxidized insulin B chain as a substrate, the purified proteinase exhibited specificity to aromatic and hydrophobic amino-acid residues, such as Phe, Leu, and Gly at the P1 position, splitting primarily the peptide bonds: Phe(1)-Val(2), Leu(15)-Tyr(16), and Gly(23)-Phe(24). The proteinase appeared to be sensitive to the specific synthetic inhibitors of the serine proteinases DFP (diisopropyl flourophosphate) and PMSF (phenyl-methylsulfonyl fluoride) as well as to some naturally occurring protein inhibitors of chymotrypsin. It is worth noting that the enzyme exhibited the highest sensitivity to inhibition by AMCI-1 (with an association constant of 3 x 10(10) M(-1)), an inhibitor of cathepsin G/chymotrypsin from the larval hemolymph of Apis mellifera, reinforcing the possibility of involvement of inhibitors from hemolymph in insect innate immunity. The substrate specificity and proteinase inhibitor effects indicate that the purified proteinase from the fermentation broth of Conidiobolus coronatus is a subtilisin-like serine proteinase.

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Year:  2006        PMID: 16933280     DOI: 10.1002/arch.20134

Source DB:  PubMed          Journal:  Arch Insect Biochem Physiol        ISSN: 0739-4462            Impact factor:   1.698


  5 in total

1.  Octanoic Acid-An Insecticidal Metabolite of Conidiobolus coronatus (Entomopthorales) That Affects Two Majors Antifungal Protection Systems in Galleria mellonella (Lepidoptera): Cuticular Lipids and Hemocytes.

Authors:  Agata Kaczmarek; Anna Katarzyna Wrońska; Michalina Kazek; Mieczysława Irena Boguś
Journal:  Int J Mol Sci       Date:  2022-05-06       Impact factor: 6.208

2.  Cuticular fatty acids of Galleria mellonella (Lepidoptera) inhibit fungal enzymatic activities of pathogenic Conidiobolus coronatus.

Authors:  Anna Katarzyna Wrońska; Mieczysława Irena Boguś; Emilia Włóka; Michalina Kazek; Agata Kaczmarek; Katarzyna Zalewska
Journal:  PLoS One       Date:  2018-03-08       Impact factor: 3.240

3.  Conidiobolus coronatus induces oxidative stress and autophagy response in Galleria mellonella larvae.

Authors:  Michalina Kazek; Agata Kaczmarek; Anna Katarzyna Wrońska; Mieczysława Irena Boguś
Journal:  PLoS One       Date:  2020-02-03       Impact factor: 3.240

4.  Harman and norharman, metabolites of entomopathogenic fungus Conidiobolus coronatus (Entomopthorales), disorganize development of Galleria mellonella (Lepidoptera) and affect serotonin-regulating enzymes.

Authors:  Anna Katarzyna Wrońska; Mieczysława Irena Boguś; Agata Kaczmarek; Michalina Kazek
Journal:  PLoS One       Date:  2018-10-03       Impact factor: 3.240

5.  Dodecanol, metabolite of entomopathogenic fungus Conidiobolus coronatus, affects fatty acid composition and cellular immunity of Galleria mellonella and Calliphora vicina.

Authors:  Michalina Kazek; Agata Kaczmarek; Anna Katarzyna Wrońska; Mieczysława Irena Boguś
Journal:  Sci Rep       Date:  2021-08-05       Impact factor: 4.379

  5 in total

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