| Literature DB >> 27827845 |
Stephanie Hielscher-Michael1,2, Carola Griehl3, Mirko Buchholz4, Hans-Ulrich Demuth5, Norbert Arnold6, Ludger A Wessjohann7.
Abstract
In recent years, many new enzymes, like glutaminyl cyclase (QC), could be associated with pathophysiological processes and represent targets for many diseases, so that enzyme-inhibiting properties of natural substances are becoming increasingly important. In different studies, the pathophysiology connection of QC to various diseases including Alzheimer's disease (AD) was described. Algae are known for the ability to synthesize complex and highly-diverse compounds with specific enzyme inhibition properties. Therefore, we screened different algae species for the presence of QC inhibiting metabolites using a new "Reverse Metabolomics" technique including an Activity-correlation Analysis (AcorA), which is based on the correlation of bioactivities to mass spectral data with the aid of mathematic informatics deconvolution. Thus, three QC inhibiting compounds from microalgae belonging to the family of sulfolipids were identified. The compounds showed a QC inhibition of 81% and 76% at concentrations of 0.25 mg/mL and 0.025 mg/mL, respectively. Thus, for the first time, sulfolipids are identified as QC inhibiting compounds and possess substructures with the required pharmacophore qualities. They represent a new lead structure for QC inhibitors.Entities:
Keywords: AD; Scenedesmus sp.; glutaminyl cyclase (QC) inhibitor; microalgae; natural product; reverse metabolomics; sulfolipids
Mesh:
Substances:
Year: 2016 PMID: 27827845 PMCID: PMC5128746 DOI: 10.3390/md14110203
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
QC inhibition activities [%] of the chlorophyll-free methanol extracts of 6 different algae species harvested at two growth phases (exponential growth phase (GP) and stationary growth phase (SP)) by two extraction procedures (s = single solvent extraction, and m = multi-step solvent extraction).
| Algae Extract | Inhibition of QC Enzyme Activity [%] * | Algae Extract | Inhibition of QC Enzyme Activity[%] * |
|---|---|---|---|
| 59 | 32 | ||
| 24 | 43 | ||
| 15 | 21 | ||
| 35 | 63 | ||
| 65 | 39 | ||
| 23 | 72 | ||
| 56 | 19 | ||
| 22 | 16 | ||
| 44 | 0 | ||
| 26 | 0 | ||
| 57 | 56 | ||
| 22 | 61 |
* Inhibition of QC enzyme activity = QC activity without inhibitor/extract − residual QC activity after measurement; (QC enzyme activity [%] − residual activity [%]).
Hit list of the top ranked (depending on Spearman’s rank correlation coefficient rs) activity relevant peak clusters based on UPLC/ESI-MS data and ESI-FTICR-MS data both in the negative ion mode correlated with the QC inhibition activity.
| UPLC/ESI-MS | FTICR-ESI-MS | ||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|
| Rank | [M − H]− | RT | Possible Compound | Rank | [M − H]− | Possible Compound | Elemental Composition | Calcd. [M − H]− | DBE | ||
| 1. | 0.75 | 815.49982 | 1 | C43H76O12S | 815.498472 * | 5.0 | |||||
| 4. | 0.83 | 815.7333 | 7.22 | 1 | |||||||
| 7. | 0.68 | 816.50348 | Isotope p. | ||||||||
| 8. | 0.80 | 817.6666 | 7.70 | 2 | |||||||
| 9. | 0.80 | 818.5999 | 7.70 | Isotope p. | 9. | 0.64 | 794.52123 | Isotope p. | |||
| 10. | 0.64 | 795.52035 | Isotope p. | ||||||||
| 13. | 0.63 | 817.51617 | 2 | C43H78O12S | 817.514122* | 4.0 | |||||
| 14. | 0.63 | 819.53126 | Isotope p. | ||||||||
| 15. | 0.75 | 794.7333 | 8.86 | Isotope p. | |||||||
| 19. | 0.56 | 793.51536 | 3 | C41H78O12S | 793.514122* | 2.0 | |||||
| 22. | 0.74 | 817.6333 | 7.22 | Isotope p. | |||||||
* The elemental formulas were calculated based on the elemental composition of high-resolution FT-ICR-MS data out of m/z by repeated direct measurement of the extracts.
Negative ion UPLC/ESI-MSn data of compounds 1–3 and a SQDG standard (Lipid Products (GB)).
| Compound | [M − H]− | Scan Mode | |
|---|---|---|---|
| 815 | MS2 [815] | 537 ([b], 100), 559 ([a1], 38) | |
| 817 | MS2 [817] | 537 ([b]), 100), 561 ([a2], 32) | |
| 793 | MS2 [793] | 537 ([b], 100), 225 ([d], 20) | |
| SQDG standard | 815 | MS2 [815] | 537 ([b], 100), 559 ([a1], 90) |
Scheme 1Proposed fragmentation scheme for [M − H]– ions of the compounds 1–3 observed in the MS1, MS2, MS3 and MS4 experiments in the negative ion mode.
Figure 1Comparison of the structural characteristics of the QC inhibitor 1-(3-(1H-imidazol-1-yl)propyl)-3-(3,4-dimethoxyphenyl)thio-urea with the QC inhibiting sulfolipids (1–3). [brown box: metal binding group; grey box: flexible linker; green box: scaffold incl. decoration].