...
首页> 外文期刊>Metabolism: Clinical and Experimental >Differences in the cellular processing of AspB10 human insulin compared with human insulin and LysB28ProB29 human insulin.
【24h】

Differences in the cellular processing of AspB10 human insulin compared with human insulin and LysB28ProB29 human insulin.

机译:与人胰岛素和LysB28ProB29人胰岛素相比,AspB10人胰岛素的细胞加工差异。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Cellular metabolism studies were performed comparing human insulin with two rapid-acting analogs, LysB28ProB29 insulin (LysPro) and AspB10 insulin (B10-Asp). B10-Asp bound to isolated hepatocytes at 37 degrees C to a greater extent than LysPro or native insulin, which were equivalent. The rate of degradation was similar for the three materials, resulting in a significant reduction in the degraded/bound ratio for the B10 analog. The processing of membrane-bound material was examined by incubating cells with hormone at 4 degrees C, removing unbound insulin, and incubating the cells at 37 degrees C. Again, binding was greater for B10-Asp versus LysPro or native insulin, with a reduction in the degraded/bound ratio. Hormone internalization and processing was examined by an acid wash of cells incubated with 125I(A14)-labeled hormone to remove surface-bound materials. The processing rate was slower for B10-Asp versus LysPro or native insulin. Cell extraction and examination on molecular-sieve chromatography confirmed that B10-Asp was processed at a slower rate than either LysPro or native insulin. Intact B10-Asp was found in the cell after 4 hours, whereas all native insulin and LysPro were degraded by 90 to 120 minutes. B10-Asp also caused a greater incorporation of thymidine into DNA in cultured cells than LysPro or native insulin, which were similar. These data show that the cellular processing of LysPro is essentially identical to that of native insulin. However, B10-Asp has markedly different properties and is processed much more slowly. The prolonged cell residence time of B10-Asp could contribute to its greater effects on cell growth and mitogenesis.
机译:进行了细胞代谢研究,将人胰岛素与两种速效类似物LysB28ProB29胰岛素(LysPro)和AspB10胰岛素(B10-Asp)进行了比较。与等效的LysPro或天然胰岛素相比,B10-Asp在37摄氏度下与分离的肝细胞结合的程度更高。三种材料的降解速率相似,从而导致B10类似物的降解/结合率大大降低。通过将细胞与激素在4°C下孵育,去除未结合的胰岛素并在37°C下进行孵育来检查膜结合材料的加工过程。同样,与LysPro或天然胰岛素相比,B10-Asp的结合力更大,降低了降级/结合比例。通过酸洗细胞与125 I(A14)标记的激素孵育以去除表面结合的物质,检查激素的内在化和加工。与LysPro或天然胰岛素相比,B10-Asp的加工速度较慢。细胞提取和分子筛层析检查证实,B10-Asp的加工速度低于LysPro或天然胰岛素。 4小时后在细胞中发现完整的B10-Asp,而所有天然胰岛素和LysPro在90至120分钟时被降解。与相似的LysPro或天然胰岛素相比,B10-Asp还导致胸苷更多地掺入培养细胞的DNA中。这些数据表明,LysPro的细胞加工与天然胰岛素基本相同。但是,B10-Asp具有明显不同的特性,并且加工速度要慢得多。 B10-Asp的延长的细胞停留时间可能有助于其对细胞生长和有丝分裂的更大影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号