Potts J T, Kronenberg H M, Habener J F, Rich A
Ann N Y Acad Sci. 1980;343:38-55. doi: 10.1111/j.1749-6632.1980.tb47241.x.
Figure 11 summarizes our present concepts of the biosynthetic sequence for parathyroid hormone, deduced largely from observations in vitro. Many aspects of the presumed process whereby preproparathyroid hormone is converted via proparathyroid hormone to the hormone remain unclarified and require much further study, as is true for many other prehormones. These studies, however, coupled with (1) further investigations of intracellular degradation of parathyroid hormone, if this indeed operates in vivo; (2) the proteolytic conversion of secreted hormone in peripheral tissues; and (3) analysis of transcriptional control of biosynthesis of parathyroid hormone, using radioactive cDNA for hybridization studies of mRNA production and turnover, hold great promise for further understanding of critical regulatory factors central to expression of the actions of parathyroid hormone.
图11总结了我们目前对于甲状旁腺激素生物合成序列的概念,这些概念很大程度上是根据体外观察推断出来的。前甲状旁腺激素经甲状旁腺激素原转化为该激素的假定过程的许多方面仍不清楚,需要进一步深入研究,许多其他前体激素的情况也是如此。然而,这些研究,再加上(1)对甲状旁腺激素细胞内降解的进一步研究(如果这种降解确实在体内发生);(2)外周组织中分泌激素的蛋白水解转化;以及(3)利用放射性cDNA进行mRNA产生和周转的杂交研究来分析甲状旁腺激素生物合成的转录控制,有望进一步了解甲状旁腺激素作用表达核心的关键调节因子。