Enomoto Hirofumi, Li Can-Peng, Morizane Kentaro, Ibrahim Hisham R, Sugimoto Yasushi, Ohki Shinichi, Ohtomo Hideo, Aoki Takayoshi
United Chair of Applied Resource Chemistry, Course of Bioresource Science for Processing, United Graduate School of Agricultural Sciences, Kagoshima University, Kagoshima 890-0065, Japan.
J Agric Food Chem. 2007 Mar 21;55(6):2392-8. doi: 10.1021/jf062830n. Epub 2007 Feb 22.
Beta-lactoglobulin (beta-Lg) was glycated with maltopentaose and subsequently phosphorylated by dry-heating in the presence of pyrophosphate to investigate the structural and functional properties of phosphorylated beta-Lg. The circular dichroism spectra showed that the change of the secondary structure in the beta-Lg molecule by glycation and subsequent phosphorylation was small. The differential scanning calorimetry thermograms of beta-Lg showed that the denaturation temperature of the most stable domain was only slightly affected, whereas the retinol-binding activity of beta-Lg was somewhat reduced by glycation and subsequent phosphorylation. These results indicated that the conformational changes of the beta-Lg molecule by glycation and subsequent phosphorylation were mild. The anti-beta-Lg antibody response was somewhat reduced by glycation, but significant changes were not observed by phosphorylation. Although the stability of beta-Lg against heat-induced insolubility was improved by glycation alone, it was further enhanced by phosphorylation. The calcium phosphate solubilizing ability of beta-Lg was enhanced by phosphorylation following glycation.
用麦芽五糖对β-乳球蛋白(β-Lg)进行糖基化,随后在焦磷酸存在下通过干热进行磷酸化,以研究磷酸化β-Lg的结构和功能特性。圆二色光谱表明,糖基化及随后的磷酸化作用对β-Lg分子二级结构的改变较小。β-Lg的差示扫描量热法热谱图显示,最稳定结构域的变性温度仅受到轻微影响,而糖基化及随后的磷酸化作用使β-Lg的视黄醇结合活性有所降低。这些结果表明,糖基化及随后的磷酸化作用引起的β-Lg分子构象变化较为温和。糖基化使抗β-Lg抗体反应有所降低,但磷酸化未观察到显著变化。虽然单独糖基化可提高β-Lg对热诱导不溶性的稳定性,但磷酸化可进一步增强这种稳定性。糖基化后进行磷酸化可增强β-Lg的磷酸钙溶解能力。