| Literature DB >> 21811674 |
Adriano A Mendes1, Larissa Freitas, Ana Karine F de Carvalho, Pedro C de Oliveira, Heizir F de Castro.
Abstract
The objective of this work was to select the most suitable procedure to immobilize lipase from Penicillium camembertii (Lipase G). Different techniques and supports were evaluated, including physical adsorption on hydrophobic supports octyl-agarose, poly(hydroxybutyrate) and Amberlite resin XAD-4; ionic adsorption on the anionic exchange resin MANAE-agarose and covalent attachment on glyoxyl-agarose, MANAE-agarose cross-linked with glutaraldehyde, MANAE-agarose-glutaraldehyde, and epoxy-silica-polyvinyl alcohol composite. Among the tested protocols, the highest hydrolytic activity (128.2 ± 8.10 IU·g(-1) of support) was achieved when the lipase was immobilized on epoxy-SiO(2)-PVA using hexane as coupling medium. Lipase immobilized by ionic adsorption on MANAE-agarose also gave satisfactory result, attaining 55.6 ± 2.60 IU·g(-1) of support. In this procedure, the maximum loading of immobilized enzyme was 9.3 mg·g(-1) of gel, and the highest activity (68.8 ± 2.70 IU·g(-1) of support) was obtained when 20 mg of protein·g(-1) was offered. Immobilization carried out in aqueous medium by physical adsorption on hydrophobic supports and covalent attachment on MANAE-agarose-glutaraldehyde and glyoxyl-agarose was shown to be unfeasible for Lipase G. Thermal stability tests revealed that the immobilized derivative on epoxy-SiO(2)-PVA composite using hexane as coupling medium had a slight higher thermal stability than the free lipase.Entities:
Year: 2011 PMID: 21811674 PMCID: PMC3147009 DOI: 10.4061/2011/967239
Source DB: PubMed Journal: Enzyme Res ISSN: 2090-0414
Characteristics of the tested supports for immobilizing Lipase G by different protocols.
| Support | Basic structure | Particle diameter ( | Pore volume (mL·g−1) | Surface area (m2·g−1) |
|---|---|---|---|---|
| Amberlite XAD-4a | Macroreticular cross-linked aromatic polymer | 490–690 | 0.500 | ≥750 |
| Octyl-agarose CL-4Bb | Cross-linked agarose via stable ether linkages, 4% | 45–165 | — | — |
| PHBc | Polyester | 75–90 | — | — |
| SiO2-PVAd | Polysiloxane-polyvinyl alcohol hybrid matrix | 175 | 0.275 | 461 |
| Agarose CL-6Be | Cross-linked agarose via stable ether linkages, 6% | 45–165 | — | 25 |
aRohm and Haas technical information.
bAmersham Pharmacia technical information.
CPHB industrial technical information.
dReference [17].
eReference [28].
Immobilization parameters for Lipase G on different supports and protocols.
| Immobilization protocols | Support | Activating agent | IP (mg·g−1) | HA (IU·g−1) | RA (%) |
|---|---|---|---|---|---|
| Ionic adsorption | MANAE-agarose* | none | 4.52 ± 0.18 | 55.6 ± 2.60 | 14.2 ± 0.40 |
| covalent attachment | Glyoxyl-agarose* | glycidol | 4.30 ± 0.20 | 0 | 0 |
| MANAE-agarose* | glutaraldehydea | 4.47 ± 0.12 | 0 | 0 | |
| MANAE-agarose* | glutaraldehydeb | 4.52 ± 0.18 | 31.2 ± 4.50 | 8.20 ± 0.80 | |
| MANAE-agarose* | glutaraldehydec | 4.05 ± 0.05 | 0 | 0 | |
| MANAE-agarose* | glutaraldehyded | 4.09 ± 0.08 | 0 | 0 | |
| Epoxy-SiO2-PVA* | epichlorohydrind | 3.00 ± 0.04 | 9.50 ± 0.30 | 4.00 ± 0.20 | |
| Epoxy-SiO2-PVA** | epichlorohydrin | 2.50 ± 0.02 | 128.2 ± 8.10 | 60.9 ± 5.30 |
IP: Immobilized protein; HA: hydrolytic activity; RA: recovered activity.
*Immobilization in aqueous medium.
**Immobilization in organic medium (hexane).
aCovalent attachment in 100 mmoL·L−1 buffer phosphate at pH 7.0.
bDerivative prepared by ionic adsorption cross-linked with glutaraldehyde solution.
cCovalent attachment in 100 mmoL·L−1 buffer Tris-HCl at pH 7.0.
dCovalent attachment in 2.5 mmoL·L−1 buffer Tris-HCl at pH 7.0.
Figure 1Immobilization course for Lipase G on MANAE-agarose by ionic adsorption (a) and covalent attachment (b) on MANAE-agarose-glutaraldehyde incubated in 100 mmoL·L−1 buffer phosphate pH 7.0 (open circle), 100 mmoL·L−1 buffer Tris-HCl pH 7.0 (open triangle), and 2.5 mmoL·L−1 buffer Tris-HCl pH 7.0 (full triangle) and supernatant (full square).
Immobilization parameters for different lipase loadings offered to MANAE-agarose.
| Protein loading (mg·g−1 of support) | IP (mg·g−1) | HA (IU·g−1) | RA (%) |
|---|---|---|---|
| 5 | 4.52 ± 0.18 | 55.6 ± 2.60 | 14.2 ± 0.40 |
| 10 | 6.80 ± 0.50 | 59.2 ± 2.80 | 10.4 ± 0.60 |
| 15 | 9.38 ± 0.21 | 66.7 ± 4.60 | 8.45 ± 0.50 |
| 20 | 9.31 ± 0.16 | 68.8 ± 2.70 | 8.80 ± 0.20 |
| 30 | 9.23 ± 0.10 | 63.8 ± 4.60 | 8.20 ± 0.50 |
IP: immobilized protein; HA: hydrolytic activity; RA: recovered activity.
Figure 2Influence of temperature on the hydrolytic activity of free (⚪) and immobilized lipase G on epoxy-SiO2-PVA composite (●).
Figure 3Residual activity for free (⚪) and immobilized Lipase G on epoxy-SiO2-PVA composite (●) incubated at 40 (a) and 50°C (b).