| Literature DB >> 28330183 |
Raveendra Aanangi1, Kasi Viswanath Kotapati2, Bhagath Kumar Palaka2, Thyagaraju Kedam1, Nirmala Devi Kanika1, Dinakara Rao Ampasala3.
Abstract
This study reports purification and characterization of lipoxygenase protein from mung bean germinating seedlings. Lipoxygenases (LOXs) are key enzymes in seed germination. The purified mung bean LOX has resolved into two peaks by chromatofocusing, one has highest LOX activity with an isoelectric point of 5.84 and the other has lowest LOX activity with an isoelectric point of 5.52. The purified LOX has molecular mass of approximately 97 kDa and showed high activity with linoleic acid than linolenic acid and arachidonic acid. The optimal activity of LOX was observed at pH 6.5 and temperature 35 °C. Far-UV circular dichroism (CD) studies revealed that the purified mung bean LOX possess secondary structural elements with significant α-helix and β-strands. Further, the secondary structure of mung bean LOX was stable up to 60 °C at pH 6.5. Biophysical and chemical properties of the mung bean LOX are similar to the other legume LOXs and may be considered as type-1 LOX.Entities:
Keywords: Chromatofocusing; Circular dichroism; Mung bean; Plant lipoxygenases; Protein purification
Year: 2016 PMID: 28330183 PMCID: PMC5398193 DOI: 10.1007/s13205-016-0427-5
Source DB: PubMed Journal: 3 Biotech ISSN: 2190-5738 Impact factor: 2.406
Summary of purification methods employed for lipoxygenase purification from mung bean germinating seedlings
| Method | Protein (mg) | Total activity (units) | Specific activity (U/mg) | Yield (%) | Purification (fold) |
|---|---|---|---|---|---|
| Crude extract | 5183 | 30,224 | 5.83 | 100 | 1 |
| Albumin fraction | 1040 | 20,976 | 20.20 | 69.0 | 3.5 |
| Sephadex G-100 | 625 | 11,900 | 19.04 | 39.4 | 3.3 |
| DEAE-DE-52 | 390 | 10,400 | 26.67 | 34.4 | 4.6 |
| Chromatofocussing (PBE-94) | |||||
| Peak-1 (pI-5.84) | 1.25 | 200 | 160.0 | 1.0 | 27.4 |
| Peak-2 (pI-5.52) | 0.63 | 7.0 | 11.11 | 0.02 | 2.0 |
Fig. 1a Gel filtration chromatography of mung bean LOX on Sephadex G-150 column. Fractions of 5 ml were collected and assayed for protein at 280 nm and LOX activity at 234 nm. b Anion exchange chromatography of mung bean LOX on DE-52 column, 0.0–0.3 M NaCl salt gradient was used to elute LOX protein from the column. Fractions of 2.5 ml were collected and assayed for protein at 280 nm and LOX activity at 234 nm
Fig. 2Isoelectrofocussing column chromatography of mung bean LOX on PBE-94 column. Fractions of 1.0 ml were collected and assayed for protein at 280 nm and LOX activity at 234 nm
Fig. 3a SDS-PAGE analysis of LOX purified from mung bean seedlings. Lane M molecular weight standards (in kDa). Lane 1 Anion exchange (DE-52) Purified mung bean LOX (peak1). b Native PAGE analysis- Mung bean LOX isoenzymes (Mb LOX1 and Mb LOX2) stained with O-Diansidine-HCl under native conditions run at 4 °C
Fig. 4Optimal conditions for mung bean LOX activity. a Effect of pH on purified mung bean LOX. Different buffers were prepared at 50 mM concentration and adjusted to defined pH values. b Effect of temperature on purified mung bean LOX. Samples were pretreated for 10 min at given temperature and then assayed for LOX activity under standard conditions
Characteristics of lipoxygenase purified from mung bean seedlings
| Parameter | Mung bean LOX |
|---|---|
| pH optimum | 6.5 |
| Isoelectric points (pI) | 5.84 and 5.52 |
| Temperature (°C) | 35–40 |
| Ionic strength (mM) | 50 |
|
| |
| Linoleic acid | 79.79 |
| Linolenic acid | 135.5 |
| Arachidonic acid | 253.1 |
|
| |
| Linoleic acid | 9.32 |
| Linolenic acid | 7.31 |
| Arachidonic acid | 8.63 |
| IC50 (µM) | |
| ETYA | 20 |
| NDGA | 48 |
| Structure | Alpha-helix and beta sheet |
| Products (absorption max) | 234 and 278 |
| Inflection point | 60 °C (pH 6.8) |
| 50 °C (pH 9.0 and 5.0) | |
Fig. 5Effect of substrate concentration on mung bean LOX and determination of Vmax and Km. Data showed for linoleic acid as substrate for mung bean LOX
Fig. 6Effect of inhibitors on mung bean LOX activity. Square ETYA and upright triangle NDGA
Fig. 7Circular dichroism analysis of purified mung bean LOX. a Far-UV CD spectra. Measurements were made at 25 °C in 10 mM phosphate buffer (pH 6.5). b Temperature effect on mung bean LOX as function of secondary structure. Mung bean LOX was pre-incubated at given temperature for 10 min and measurements were made in 10 mM phosphate buffer (pH 6.5)