Ahmad Atta, Millett Ian S, Doniach Sebastian, Uversky Vladimir N, Fink Anthony L
Department of Chemistry and Biochemistry, University of California, Santa Cruz, California 95064, USA.
J Biol Chem. 2004 Apr 9;279(15):14999-5013. doi: 10.1074/jbc.M313134200. Epub 2004 Jan 20.
Fibrillar deposits of insulin cause serious problems in implantable insulin pumps, commercial production of insulin, and for some diabetics. We performed a systematic investigation of the effect of urea-induced structural perturbations on the mechanism of fibrillation of insulin. The addition of as little as 0.5 m urea to zinc-bound hexameric insulin led to dissociation into dimers. Moderate concentrations of urea led to accumulation of a partially unfolded dimer state, which dissociates into an expanded, partially folded monomeric state. Very high concentrations of urea resulted in an unfolded monomer with some residual structure. The addition of even very low concentrations of urea resulted in increased fibrillation. Accelerated fibrillation correlated with population of the partially folded intermediates, which existed at up to 8 m urea, accounting for the formation of substantial amounts of fibrils under such conditions. Under monomeric conditions the addition of low concentrations of urea slowed down the rate of fibrillation, e.g. 5-fold at 0.75 m urea. The decreased fibrillation of the monomer was due to an induced non-native conformation with significantly increased alpha-helical content compared with the native conformation. The data indicate a close-knit relationship between insulin conformation and propensity to fibrillate. The correlation between fibrillation and the partially unfolded monomer indicates that the latter is a critical amyloidogenic intermediate in insulin fibrillation.
胰岛素的纤维状沉积物在可植入胰岛素泵、胰岛素的商业化生产以及一些糖尿病患者中引发了严重问题。我们对尿素诱导的结构扰动对胰岛素纤维化机制的影响进行了系统研究。向锌结合的六聚体胰岛素中加入低至0.5 m的尿素会导致其解离为二聚体。中等浓度的尿素会导致部分未折叠二聚体状态的积累,该状态会解离为扩展的、部分折叠的单体状态。非常高浓度的尿素会产生具有一些残余结构的未折叠单体。即使加入极低浓度的尿素也会导致纤维化增加。加速纤维化与部分折叠中间体的数量相关,这些中间体在高达8 m尿素的浓度下存在,这解释了在这种条件下大量纤维的形成。在单体条件下,加入低浓度的尿素会减慢纤维化速率,例如在0.75 m尿素时减慢5倍。单体纤维化的降低是由于诱导产生了一种非天然构象,与天然构象相比,其α-螺旋含量显著增加。数据表明胰岛素构象与纤维化倾向之间存在紧密关系。纤维化与部分未折叠单体之间的相关性表明,后者是胰岛素纤维化中关键的淀粉样蛋白生成中间体。