| Literature DB >> 22929146 |
Rasha Bassam1, Juergen Hescheler, Ayseguel Temiz-Artmann, Gerhard M Artmann, Ilya Digel.
Abstract
BACKGROUND: Minor changes in protein structure induced by small organic and inorganic molecules can result in significant metabolic effects. The effects can be even more profound if the molecular players are chemically active and present in the cell in considerable amounts. The aim of our study was to investigate effects of a nitric oxide donor (spermine NONOate), ATP and sodium/potassium environment on the dynamics of thermal unfolding of human hemoglobin (Hb). The effect of these molecules was examined by means of circular dichroism spectrometry (CD) in the temperature range between 25°C and 70°C. The alpha-helical content of buffered hemoglobin samples (0.1 mg/ml) was estimated via ellipticity change measurements at a heating rate of 1°C/min.Entities:
Year: 2012 PMID: 22929146 PMCID: PMC3443461 DOI: 10.1186/2046-1682-5-16
Source DB: PubMed Journal: BMC Biophys ISSN: 2046-1682 Impact factor: 4.778
Figure 1Best-fit tangential line method for protein unfolding temperature calculation. Calculation of the unfolding temperature (T) using the best-fit tangential lines method, which is the intersection point between the first gentle line slope and the second steep slope.
Figure 2Influence of ATP and spermine NONOate on unfolding of Hb samples prepared in Na-buffer. Influence of ATP and spermine NONOate on unfolding of Hb samples prepared in Na-buffer. a) control groups vs. NONOate groups; b) ATP groups vs. ATP+NONOate groups; c) control groups vs. ATP groups; d) NONOate groups vs. ATP+NONOate groups.
Effect of NONOate and ATP in Na-buffer on Hb unfolding
| Control-Na Buffer | 64.0 | -31.7 | 0.6 |
| NONOate | 56.0 | -31.4 | 1.3 |
| ATP | 66.0 | -15.1 | 1.2 |
| NONOate+ATP | 65.0 | -13.1 | 1.3 |
Figure 3Influence of ATP and spermine NONOate on unfolding of Hb samples prepared in K-buffer. Influence of ATP and spermine NONOate on unfolding of Hb samples prepared in K-buffer. a) control groups vs. NONOate groups; b) ATP groups vs. ATP+NONOate groups; c) control groups vs. ATP groups; d) NONOate groups vs. ATP+NONOate groups.
Effect of NONOate and ATP in K-buffer on Hb unfolding
| Control- K Buffer | 62.0 | -22.6 | 1.1 |
| NONOate | 59.0 | -21.5 | 1.7 |
| ATP | 65.0 | -23.8 | 1.4 |
| NONOate | 61.0 | -23.9 | 1.1 |