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超氧化物歧化酶糖基化保护的结构研究。

A structural study on the protection of glycation of superoxide dismutase by thymoquinone.

机构信息

Interdisciplinary Biotechnology Unit, Aligarh Muslim University, Aligarh 202002, India.

College of Applied Medical Sciences, Qassim University, Buraidah, Saudi Arabia.

出版信息

Int J Biol Macromol. 2014 Aug;69:476-81. doi: 10.1016/j.ijbiomac.2014.06.003. Epub 2014 Jun 13.

Abstract

Accumulation of advanced glycation end products (AGEs) in tissues and serum plays important roles in diabetes-associated complications. Therefore, the identification of antiglycating compounds is attracting considerable interest. In this study, the structural changes associated with the glycation of superoxide dismutase (SOD) and its protection by thymoquinone (TQ) have been investigated by biophysical techniques. Incubation of SOD with glucose, methylglyoxal (MG) or both at 37̊C resulted in progressive hyperchromicity at 280nm, intrinsic fluorescence quenching at 310nm, decrease in negative ellipticity at 208nm, AGE-specific fluorescence enhancement in the wavelength range 400-480nm and Thioflavin T (ThT) fluorescence enhancement at 480nm (fibrillar state enhancement). Therefore, glycation by glucose or MG induced both tertiary and secondary structural changes in SOD and formation of AGEs and fibrils. The changes were more and faster with MG than with glucose since MG is a stronger glycating agent than glucose. TQ offered protection against glucose or MG-induced glycation of SOD as observed by a reduction in the structural changes, formation of AGEs and fibrils. Thus, TQ can be used for reducing diabetic complications many of which are due to protein glycation.

摘要

在组织和血清中,糖基化终产物(AGEs)的积累在与糖尿病相关的并发症中起着重要作用。因此,鉴定具有抗糖化作用的化合物引起了相当大的关注。在这项研究中,通过生物物理技术研究了超氧化物歧化酶(SOD)糖化及其与百里醌(TQ)保护相关的结构变化。在 37°C 下,将 SOD 与葡萄糖、甲基乙二醛(MG)或两者一起孵育,导致 280nm 处吸光度逐渐增加,310nm 处内源荧光猝灭,208nm 处负椭圆率降低,400-480nm 范围内出现 AGE 特异性荧光增强,480nm 处 Thioflavin T(ThT)荧光增强(纤维状状态增强)。因此,葡萄糖或 MG 的糖化导致 SOD 的三级和二级结构发生变化,并形成 AGEs 和纤维。由于 MG 是比葡萄糖更强的糖化剂,因此与葡萄糖相比,MG 引起的变化更多且更快。TQ 提供了对 SOD 由葡萄糖或 MG 诱导的糖化的保护,这表现在结构变化、AGEs 和纤维的形成减少。因此,TQ 可用于减少许多因蛋白质糖化而导致的糖尿病并发症。

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