Shi Guojun, Somlo Diane RM, Kim Geun Hyang, Prescianotto-Baschong Cristina, Sun Shengyi, Beuret Nicole, Long Qiaoming, Rutishauser Jonas, Arvan Peter, Spiess Martin, Qi Ling
Department of Molecular and Integrative Physiology, University of Michigan Medical School, Ann Arbor, Michigan, USA.
Division of Nutritional Sciences, Cornell University, Ithaca, New York, USA.
J Clin Invest. 2017 Oct 2;127(10):3897-3912. doi: 10.1172/JCI94771. Epub 2017 Sep 18.
Peptide hormones are crucial regulators of many aspects of human physiology. Mutations that alter these signaling peptides are associated with physiological imbalances that underlie diseases. However, the conformational maturation of peptide hormone precursors (prohormones) in the ER remains largely unexplored. Here, we report that conformational maturation of proAVP, the precursor for the antidiuretic hormone arginine-vasopressin, within the ER requires the ER-associated degradation (ERAD) activity of the Sel1L-Hrd1 protein complex. Serum hyperosmolality induces expression of both ERAD components and proAVP in AVP-producing neurons. Mice with global or AVP neuron-specific ablation of Se1L-Hrd1 ERAD progressively developed polyuria and polydipsia, characteristics of diabetes insipidus. Mechanistically, we found that ERAD deficiency causes marked ER retention and aggregation of a large proportion of all proAVP protein. Further, we show that proAVP is an endogenous substrate of Sel1L-Hrd1 ERAD. The inability to clear misfolded proAVP with highly reactive cysteine thiols in the absence of Sel1L-Hrd1 ERAD causes proAVP to accumulate and participate in inappropriate intermolecular disulfide-bonded aggregates, promoted by the enzymatic activity of protein disulfide isomerase (PDI). This study highlights a pathway linking ERAD to prohormone conformational maturation in neuroendocrine cells, expanding the role of ERAD in providing a conducive ER environment for nascent proteins to reach proper conformation.
肽类激素是人体生理学诸多方面的关键调节因子。改变这些信号肽的突变与构成疾病基础的生理失衡相关。然而,内质网(ER)中肽类激素前体(激素原)的构象成熟在很大程度上仍未被探索。在此,我们报告抗利尿激素精氨酸加压素的前体激素原AVP在ER内的构象成熟需要Sel1L - Hrd1蛋白复合物的内质网相关降解(ERAD)活性。血清高渗状态诱导产生AVP的神经元中ERAD成分和激素原AVP的表达。全身性或AVP神经元特异性敲除Se1L - Hrd1 ERAD的小鼠逐渐出现多尿和烦渴,这是尿崩症的特征。从机制上讲,我们发现ERAD缺陷导致所有激素原AVP蛋白的很大一部分显著滞留在内质网并聚集。此外,我们表明激素原AVP是Sel1L - Hrd1 ERAD的内源性底物。在缺乏Sel1L - Hrd1 ERAD的情况下,无法清除具有高反应性半胱氨酸硫醇的错误折叠的激素原AVP会导致激素原AVP积累并参与不适当的分子间二硫键结合聚集体,这是由蛋白质二硫键异构酶(PDI)的酶活性促进的。这项研究突出了一条将ERAD与神经内分泌细胞中激素原构象成熟联系起来的途径,扩展了ERAD在为新生蛋白质达到正确构象提供有利内质网环境方面的作用。