Raabe H M, Molsen H, Mlinaric S M, Açil Y, Sinnecker G H, Notbohm H, Kruse K, Müller P K
Klinik für Pädiatrie, Medizinische Universtät zu Lübeck, Germany.
Biochem J. 1996 Nov 1;319 ( Pt 3)(Pt 3):699-704. doi: 10.1042/bj3190699.
Non-enzymic interactions of carbohydrates and proteins are a major feature of cumulative modification in basement membranes in the course of diabetic microvascular complications. To evaluate the significance of both glycation and glycoxidation reactions for subsequent alterations of biochemical properties, we examined the effects of in vitro glycation on distinct collagen IV domains under different experimental conditions. The 7 S domain and the major triple-helical domain from human placental collagen IV were incubated for various time intervals up to 14 days at 37 degrees C in the presence of different concentrations of either glucose or ribose under oxidative and antioxidative conditions. Carbohydrate-induced non-enzymic modification in two collagen IV domains was revealed by increased cross-linking and fluorescence. In addition, these non-enzymic modifications apparently have a major impact on molecular conformation and thermal stability of collagen IV, which in turn might influence both cell-matrix interactions and matrix assembly.
碳水化合物与蛋白质的非酶相互作用是糖尿病微血管并发症过程中基底膜累积修饰的一个主要特征。为了评估糖基化和糖氧化反应对随后生化特性改变的重要性,我们在不同实验条件下研究了体外糖基化对不同IV型胶原结构域的影响。在氧化和抗氧化条件下,将来自人胎盘IV型胶原的7S结构域和主要三螺旋结构域在37℃下与不同浓度的葡萄糖或核糖一起孵育不同时间间隔,长达14天。通过交联增加和荧光显示了碳水化合物诱导的两个IV型胶原结构域的非酶修饰。此外,这些非酶修饰显然对IV型胶原的分子构象和热稳定性有重大影响,这反过来可能会影响细胞-基质相互作用和基质组装。