| Literature DB >> 21347249 |
Emmanuel Vijay Paul Pandeeti1, Gopi Krishna Pitchika, Jyotsna Jotshi, Smita S Nilegaonkar, Pradnya P Kanekar, Dayananda Siddavattam.
Abstract
Conventional leather processing involving depilation of animal hide by lime and sulphide treatment generates considerable amounts of chemical waste causing severe environmental pollution. Enzymatic depilation is an environmentally friendly process and has been considered to be a viable alternative to the chemical depilation process. We isolated an extracellular protease from Pseudomonas aeruginosa strain MCM B-327 with high depilation activity using buffalo hide as a substrate. This 33 kDa protease generated a peptide mass fingerprint and de novo sequence that matched perfectly with LasB (elastase), of Pseudomonas aeruginosa. In support of this data a lasB mutant of MCM B-327 strain lacked depilatory activity and failed to produce LasB. LasB heterologously over-produced and purified from Escherichia coli also exhibited high depilating activity. Moreover, reintroduction of the lasB gene to the P. aeruginosa lasB mutant via a knock-in strategy also successfully restored depilation activity thus confirming the role of LasB as the depilating enzyme.Entities:
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Year: 2011 PMID: 21347249 PMCID: PMC3037957 DOI: 10.1371/journal.pone.0016742
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Bacterial strains and plasmids.
| Strain/Plasmid | Genotype or phenotype | Reference |
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| Amr, Cmr wild type strain |
|
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| Ampr, CmrGmr Derivative of wild type | This work |
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| Ampr, Cmr,Gmr , Kmr, LasB negative mutant of | This work |
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|
|
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| pGEMT-Easy | Ampr, Cloning vector with 5′ T overhangs | Promega |
| pMMB206 | Cmr, Broad host range mobilzable vector |
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| pMMB-Km | Kmr, broad host range expression vector created by replacing cmr gene with Kmr gene in pMMB206. | This work |
| pUC18 | Ampr, high copy number cloning vector |
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| pSUP202 | Ampr, Cmr, Tcr, Mob+ | 41 |
| pGEMD | Ampr, 2 kb | This work |
| pGEMD153 | Ampr, 2 kb | This work |
| pMMBD | Kmr, 2 kb | This work |
| pUCD | Ampr, 2 kb | This work |
| pUCDG | Ampr, Gmr , | This work |
| pSUPDG | Ampr, Gmr,Tetr, | This work |
Figure 1Identification of depilating protease of Pseudomonas aeruginosa MCM B-327.
Panel A and B represent native PAGE and the corresponding zymogram of extracellular proteins of Pseudomonas aeruginosa MCM B-327. Panel C. SDS-PAGE showing the molecular mass of the depilating protease electro-eluted from the zymogram. Lane 1 represents protein molecular mass markers. The 33 kDa depilating protease band found in lane 2 is shown with an arrow. Depilating activity shown by crude extracellular protease (a), protease electro-eluted from the zymogram (b) and a control hide kept by adding buffer instead of protease are shown in panel D.
Figure 2Purification of extracellular depilating protease from Pseudomonas aeruginosa MCM B-327: Peak I and II show elution of 55 kDa and 33 kDa proteins from the gel filtration column.
Depilating activity is found only with 33 kDa protein.
Figure 3Depilating of animal hide by extracellular proteins obtained from P.aeruginosa MCM B-327 (panel A) P.aeruginosa MCM B-327-B1 (panel B) and P.aeruginosa MCM B-327-B2 (panel C).
Extracellular protein profile of P. aeruginosa MCM B-327 (lane 2) and knockout strain (lane 3) is shown in panel D. Absence of the 33 kD LasB is shown with an arrow.
Figure 4Panel A shows caseinolytic activity of (I) E.coli DH5α (pGEMD) and (II) E.coli DH5α (pGEMD153) and depilating activity of extracellular proteins produced by E. coli DH5α (pGEMD) (III) and E. coli DH5α (pGEMD153) (IV) Panel B shows SDS-PAGE profile of extracellular proteins of E.coli DH5α (lane 1) and E.coli DH5α (pGEMD153) (lane 2).