Xiong Xiaochun, Blakely Alan, Karra Prasoona, VandenBerg Michael A, Ghabash Gabrielle, Whitby Frank, Zhang Yi Wolf, Webber Matthew J, Holland William L, Hill Christopher P, Chou Danny Hung-Chieh
Department of Biochemistry , University of Utah , Salt Lake City UT 84112 , USA . Email:
Department of Nutrition and Integrative Physiology , University of Utah , Salt Lake City UT 84112 , USA.
Chem Sci. 2019 Nov 5;11(1):195-200. doi: 10.1039/c9sc04555d. eCollection 2020 Jan 7.
Although insulin was first purified and used therapeutically almost a century ago, there is still a need to improve therapeutic efficacy and patient convenience. A key challenge is the requirement for refrigeration to avoid inactivation of insulin by aggregation/fibrillation. Here, in an effort to mitigate this problem, we introduced a 4 disulfide bond between a C-terminal extended insulin A chain and residues near the C-terminus of the B chain. Insulin activity was retained by an analog with an additional disulfide bond between residues A22 and B22, while other linkages tested resulted in much reduced potency. Furthermore, the A22-B22 analog maintains the native insulin tertiary structure as demonstrated by X-ray crystal structure determination. We further demonstrate that this four-disulfide analog has similar potency in mice compared to native insulin and demonstrates higher aggregation stability. In conclusion, we have discovered a novel four-disulfide insulin analog with high aggregation stability and potency.
尽管胰岛素几乎在一个世纪前就首次被纯化并用于治疗,但仍有必要提高治疗效果和患者使用的便利性。一个关键挑战是需要冷藏以避免胰岛素因聚集/纤维化而失活。在此,为了缓解这个问题,我们在C端延长的胰岛素A链和B链C端附近的残基之间引入了一个四硫键。胰岛素活性通过在A22和B22残基之间具有额外二硫键的类似物得以保留,而测试的其他连接导致效力大幅降低。此外,如X射线晶体结构测定所示,A22 - B22类似物保持了天然胰岛素的三级结构。我们进一步证明,与天然胰岛素相比,这种四硫键类似物在小鼠中具有相似的效力,并表现出更高的聚集稳定性。总之,我们发现了一种具有高聚集稳定性和效力的新型四硫键胰岛素类似物。