Loh Y P
Ciba Found Symp. 1981;81:55-78. doi: 10.1002/9780470720646.ch5.
The significance of glycosylation of the ACTH/alpha-MSH-endorphin precursor in the biosynthesis, processing and secretion of its peptide products was examined in the toad neurointermediate (intermediate - posterior) lobe, with the aid of a specific inhibitor of glycosylation, tunicamycin. Tunicamycin did not affect the synthesis of the precursor but prevented its glycosylation. In the presence of tunicamycin the precursor underwent rapid intracellular degradation. Precursor molecules that escaped complete degradation were processed to an ACTH molecule with approximately 19 000 molecular weight and to other atypical peptides, which were released. In vitro studies showed that trypsinization of the non-glycosylated precursor resulted in its random proteolysis while large forms of ACTH were cleaved from the glycosylated precursor. The results indicate that glycosylation of the ACTH/alpha-MSH-endorphin precursor may confer specific conformational properties upon the molecule, thus regulating its limited proteolysis. Turnover and release studies revealed two different pools of ACTH, beta-LPH and alpha-MSH-related peptides in the toad intermediate lobe. One pool contained ACTH, beta-LPH, alpha-MSH and beta-endorphin, which were rapidly synthesized and released, or degraded within 6 h of synthesis if their release was inhibited. The other pool was stored and was stable for at least 10 h, if prevented from being released. Peptides in this stored pool primarily included ACTH, alpha-MSH and beta-LPH; beta-endorphin was a minor component of this pool. The release from both pools of peptides was inhibited by dopamine, while the stored pool was selectively inhibited from release by L-isoprenaline (L-isoproterenol).
借助糖基化特异性抑制剂衣霉素,在蟾蜍神经中间(中间 - 后部)叶中研究了促肾上腺皮质激素/α-黑素细胞刺激素 - 内啡肽前体的糖基化在其肽产物生物合成、加工和分泌中的意义。衣霉素不影响前体的合成,但阻止其糖基化。在衣霉素存在下,前体经历快速的细胞内降解。未完全降解的前体分子被加工成分子量约为19000的促肾上腺皮质激素分子和其他非典型肽,并被释放。体外研究表明,非糖基化前体经胰蛋白酶消化会导致随机蛋白水解,而大形式的促肾上腺皮质激素则从糖基化前体中裂解出来。结果表明,促肾上腺皮质激素/α-黑素细胞刺激素 - 内啡肽前体的糖基化可能赋予分子特定的构象特性,从而调节其有限的蛋白水解。周转和释放研究揭示了蟾蜍中间叶中促肾上腺皮质激素、β-促脂素和α-黑素细胞刺激素相关肽的两个不同池。一个池中含有促肾上腺皮质激素、β-促脂素、α-黑素细胞刺激素和β-内啡肽,它们快速合成并释放,如果释放受到抑制,则在合成后6小时内降解。另一个池被储存,如果阻止其释放则至少稳定10小时。这个储存池中的肽主要包括促肾上腺皮质激素、α-黑素细胞刺激素和β-促脂素;β-内啡肽是这个池中的次要成分。两个肽池的释放均受到多巴胺的抑制,而储存池的释放则被L-异丙肾上腺素选择性抑制。