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1.
Int J Biol Macromol ; 79: 871-82, 2015 Aug.
Article in English | MEDLINE | ID: mdl-26056991

ABSTRACT

An alkaline proteinase (STAP) was produced from strain TN650 isolated from a Tunisian off-shore oil field and assigned as Streptomyces koyangensis strain TN650 based on physiological and biochemical properties and 16S rRNA gene sequencing. Matrix assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF/MS) analysis revealed that the purified enzyme was a monomer with a molecular mass of 45125.17-Da. The enzyme had an NH2-terminal sequence of TQSNPPSWGLDRIDQTTAFTKACSIKY, thus sharing high homology with those of Streptomyces proteases. The results showed that this protease was completely inhibited by phenylmethanesulfonyl fluoride (PMSF), diiodopropyl fluorophosphates (DFP), and partially inhibited by 5,5-dithio-bis-(2-nitro benzoic acid) (DTNB), which strongly suggested its belonging to the serine thiol protease family. Using casein as a substrate, the optimum pH and temperature values for protease activity were pH 10 and 70 °C, respectively. The protease was stable at pH 7-10 and 30-60 °C for 24 h. STAP exhibited high catalytic efficiency, significant detergent stability, and elevated organic solvent resistance compared to the SG-XIV proteases from S. griseus and KERAB from Streptomyces sp. AB1. The stap gene encoding STAP was isolated, and its DNA sequence was determined. These properties make STAP a potential candidate for future application in detergent formulations and non-aqueous peptide biocatalysis.


Subject(s)
Bacterial Proteins/chemistry , Endopeptidases/chemistry , Enzyme Stability , Serine Proteases/chemistry , Streptomyces/enzymology , Bacterial Proteins/isolation & purification , Bacterial Proteins/metabolism , Detergents/chemistry , Endopeptidases/isolation & purification , Endopeptidases/metabolism , Hydrolysis , Kinetics , RNA, Ribosomal, 16S/genetics , Serine Proteases/isolation & purification , Serine Proteases/metabolism , Solvents/chemistry , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization , Substrate Specificity , Temperature
2.
Int J Biol Macromol ; 73: 253-63, 2015 Feb.
Article in English | MEDLINE | ID: mdl-25478960

ABSTRACT

A novel extracellular lignin peroxidase (called LiP-SN) was produced and purified from a newly isolated Streptomyces griseosporeus strain SN9. The findings revealed that the pure enzyme was a monomeric protein with an estimated molecular mass of 43 kDa and a Reinheitzahl value of 1.63. The 19 N-terminal residue sequence of LiP-SN showed high homology with those of Streptomyces peroxidases. Its optimum pH and temperature were pH 8.5 and 65 °C, respectively. The enzyme was inhibited by sodium azide and potassium cyanide, suggesting the presence of heme components in its tertiary structure. Its catalytic efficiency was higher than that of the peroxidase from Streptomyces albidoflavus strain TN644. Interestingly, LiP-SN showed marked dye-decolorization efficiency and stability toward denaturing, oxidizing, and bleaching agents, and compatibility with EcoVax and Dipex as laundry detergents for 48 h at 40 °C. These properties make LiP-SN a potential candidate for future applications in distaining synthetic dyes and detergent formulations.


Subject(s)
Peroxidase/metabolism , Streptomyces/enzymology , Amino Acid Sequence , Detergents/pharmacology , Enzyme Stability/drug effects , Hydrogen Peroxide/pharmacology , Hydrogen-Ion Concentration , Ions/chemistry , Kinetics , Metals/chemistry , Molecular Weight , Peroxidase/chemistry , Peroxidase/genetics , Peroxidase/isolation & purification , Phylogeny , RNA, Ribosomal, 16S/genetics , Streptomyces/classification , Streptomyces/genetics , Substrate Specificity/drug effects , Temperature
3.
PLoS One ; 9(9): e108367, 2014.
Article in English | MEDLINE | ID: mdl-25264614

ABSTRACT

The sapB gene, encoding Bacillus pumilus CBS protease, and seven mutated genes (sapB-L31I, sapB-T33S, sapB-N99Y, sapB-L31I/T33S, sapB-L31I/N99Y, sapB-T33S/N99Y, and sapB-L31I/T33S/N99Y) were overexpressed in protease-deficient Bacillus subtilis DB430 and purified to homogeneity. SAPB-N99Y and rSAPB displayed the highest levels of keratinolytic activity, hydrolysis efficiency, and enzymatic depilation. Interestingly, and at the semi-industrial scale, rSAPB efficiently removed the hair of goat hides within a short time interval of 8 h, thus offering a promising opportunity for the attainment of a lime and sulphide-free depilation process. The efficacy of the process was supported by submitting depilated pelts and dyed crusts to scanning electron microscopic analysis, and the results showed well opened fibre bundles and no apparent damage to the collagen layer. The findings also revealed better physico-chemical properties and less effluent loads, which further confirmed the potential candidacy of the rSAPB enzyme for application in the leather industry to attain an ecofriendly process of animal hide depilation. More interestingly, the findings on the substrate specificity and kinetic properties of the enzyme using the synthetic peptide para-nitroanilide revealed strong preferences for an aliphatic amino-acid (valine) at position P1 for keratinases and an aromatic amino-acid (phenylalanine) at positions P1/P4 for subtilisins. Molecular modeling suggested the potential involvement of a Leu31 residue in a network of hydrophobic interactions, which could have shaped the S4 substrate binding site. The latter could be enlarged by mutating L31I, fitting more easily in position P4 than a phenylalanine residue. The molecular modeling of SAPB-T33S showed a potential S2 subside widening by a T33S mutation, thus suggesting its importance in substrate specificity.


Subject(s)
Bacillus/enzymology , Bacterial Proteins/metabolism , Endopeptidases/metabolism , Hair Removal/methods , Hair/metabolism , Peptide Hydrolases/metabolism , Animals , Bacillus/genetics , Bacterial Proteins/biosynthesis , Bacterial Proteins/genetics , Collagen/metabolism , Endopeptidases/biosynthesis , Endopeptidases/genetics , Enzyme Stability , Goats , Hydrophobic and Hydrophilic Interactions , Microscopy, Electron, Scanning , Peptide Hydrolases/biosynthesis , Peptide Hydrolases/genetics , Skin/metabolism , Substrate Specificity
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