Chaiken I M, Tamaoki H, Brownstein M J, Gainer H
FEBS Lett. 1983 Dec 12;164(2):361-5. doi: 10.1016/0014-5793(83)80317-2.
The potential of the common biosynthetic precursor of neurophysin and neuropeptide hormones to self-associate has been assessed by quantitative affinity chromatographic analysis. The precursor form, with the hormone sequence in the amino terminal region and assumed able to interact intramolecularly with the hormone binding site of the neurophysin domain of the folded precursor, exhibits an affinity for neurophysin-agarose which is intermediate between those of unliganded neurophysin and non-covalently hormone-liganded neurophysin. The results lead to a prediction that neurophysin self-association is established upon precursor synthesis and prior to limited proteolysis of the precursor to release mature neurophysin and hormone components. Such self-association could play a role in packaging of the precursor into secretory granules and in regulating subsequent precursor processing events within the granules.
通过定量亲和色谱分析评估了神经垂体素和神经肽激素的常见生物合成前体自缔合的潜力。前体形式在氨基末端区域具有激素序列,并假定能够与折叠前体的神经垂体素结构域的激素结合位点进行分子内相互作用,它对神经垂体素-琼脂糖的亲和力介于未结合配体的神经垂体素和非共价结合激素的神经垂体素之间。这些结果预测,神经垂体素自缔合在合成前体时就已建立,并且在对前体进行有限的蛋白水解以释放成熟的神经垂体素和激素成分之前就已存在。这种自缔合可能在将前体包装到分泌颗粒中以及调节颗粒内随后的前体加工事件中发挥作用。