Petkovic Vibor, Miletta Maria Consolata, Eblé Andrée, Flück Christa E, Mullis Primus-E
Division of Pediatric Endocrinology, Diabetology and Metabolism and Department of Clinical Research, University Children's Hospital, Bern, Switzerland.
Horm Res Paediatr. 2014;82(4):245-51. doi: 10.1159/000365924. Epub 2014 Aug 30.
Aggregation of growth hormone (GH) required for its proper storage in granules is facilitated by zinc (Zn(2+)) transported by specific zinc transporters in and out of the regulated secretory pathway. Slc30a5 (ZnT5) was reported to have the highest gene expression among all zinc transporters in primary mouse pituitary cells while ZnT5-null mice presented with abnormal bone development and impaired growth compared to wild-type counterparts.
In vitro studies performed in GH3 cells, a rat pituitary cell line that endogenously produces rat GH (rGH), included analysis of: cytoplasmic Zn(2+) pool changes after altering rSlc30a5 expression (luciferase assay), rZnT5 association with different compartments of the regulated secretory pathway (confocal microscopy), and the rGH secretion after rSlc30a5 knock-down (Western blot).
Confocal microscopy demonstrated high co-localization of rZnT5 with ER and Golgi (early secretory pathway) while siRNA-mediated knock-down of rSlc30a5 gene expression led to a significant reduction in rGH secretion. Furthermore, altered expression of rSlc30a5 (knock-down/overexpression) evoked changes in the cytoplasmic Zn(2+) pool indicating its important role in mediating Zn(2+) influx into intracellular compartments of the regulated secretory pathway.
Taken together, these results suggest that ZnT5 might play an important role in regulated GH secretion that is much greater than previously anticipated.
生长激素(GH)在颗粒中正确储存所需的聚集过程,由特定锌转运蛋白运输的锌(Zn(2+))促进,锌在调节性分泌途径的进出过程中发挥作用。据报道,Slc30a5(锌转运体5,ZnT5)在原代小鼠垂体细胞的所有锌转运蛋白中基因表达最高,而与野生型对照相比,ZnT5基因敲除小鼠表现出骨骼发育异常和生长受损。
在GH3细胞(一种内源性产生大鼠生长激素(rGH)的大鼠垂体细胞系)中进行的体外研究包括以下分析:改变rSlc30a5表达后细胞质锌(2+)池的变化(荧光素酶测定)、rZnT5与调节性分泌途径不同区室的关联(共聚焦显微镜检查)以及rSlc30a5基因敲低后的rGH分泌(蛋白质印迹法)。
共聚焦显微镜检查显示rZnT5与内质网和高尔基体(早期分泌途径)高度共定位,而小干扰RNA(siRNA)介导的rSlc30a5基因表达敲低导致rGH分泌显著减少。此外,rSlc30a5表达改变(敲低/过表达)引起细胞质锌(2+)池的变化,表明其在介导锌(2+)流入调节性分泌途径的细胞内区室中起重要作用。
综上所述,这些结果表明ZnT5可能在调节生长激素分泌中发挥比先前预期大得多的重要作用。