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Citations to this article

A murine model of autosomal dominant neurohypophyseal diabetes insipidus reveals progressive loss of vasopressin-producing neurons
Theron A. Russell, … , Jeffrey Weiss, J. Larry Jameson
Theron A. Russell, … , Jeffrey Weiss, J. Larry Jameson
Published December 1, 2003
Citation Information: J Clin Invest. 2003;112(11):1697-1706. https://doi.org/10.1172/JCI18616.
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Article Endocrinology Article has an altmetric score of 1

A murine model of autosomal dominant neurohypophyseal diabetes insipidus reveals progressive loss of vasopressin-producing neurons

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Abstract

Familial neurohypophyseal diabetes insipidus (FNDI) is an autosomal dominant disorder caused by mutations in the arginine vasopressin (AVP) precursor. The pathogenesis of FNDI is proposed to involve mutant protein–induced loss of AVP-producing neurons. We established murine knock-in models of two different naturally occurring human mutations that cause FNDI. A mutation in the AVP signal sequence [A(–1)T] is associated with a relatively mild phenotype or delayed presentation in humans. This mutation caused no apparent phenotype in mice. In contrast, heterozygous mice expressing a mutation that truncates the AVP precursor (C67X) exhibited polyuria and polydipsia by 2 months of age and these features of DI progressively worsened with age. Studies of the paraventricular and supraoptic nuclei revealed induction of the chaperone protein BiP and progressive loss of AVP-producing neurons relative to oxytocin-producing neurons. In addition, Avp gene products were not detected in the neuronal projections, suggesting retention of WT and mutant AVP precursors within the cell bodies. In summary, this murine model of FNDI recapitulates many features of the human disorder and demonstrates that expression of the mutant AVP precursor leads to progressive neuronal cell loss.

Authors

Theron A. Russell, Masafumi Ito, Mika Ito, Richard N. Yu, Fred A. Martinson, Jeffrey Weiss, J. Larry Jameson

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Total citations by year

Year: 2025 2021 2020 2018 2017 2015 2013 2012 2011 2010 2007 2006 2003 Total
Citations: 2 3 1 1 4 2 1 1 2 1 2 1 1 22
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Citations to this article (22)

Title and authors Publication Year
A transgenic mouse line for rabies virus-mediated trans-synaptic tracing in the postnatal developing brain.
Inada K, Hagihara M, Kihara M, Abe T, Miyamichi K
PloS one 2025
Investigation of Fibrillar Aggregates Formed by Pathogenic Pre-pro-vasopressin Mutants that Cause ADNDI.
Vaizoglu RD, Erdem B, Gul M, Acar C, Ozdemirel HO, Saglar Ozer E, Mergen H
The Journal of clinical endocrinology and metabolism 2025
Familial neurohypophyseal diabetes insipidus: clinical, genetic and functional studies of novel mutations in the arginine vasopressin gene
MI Alvelos, Â Francisco, L Gomes, I Paiva, M Melo, P Marques, S Gama-de-Sousa, S Carreiro, T Quintela, I Gonçalves, MC Lemos
Pituitary 2021
Functional analyses of three different mutations in the AVP-NPII gene causing familial neurohypophyseal diabetes insipidus
MÖ Türkmen, T Karaduman, BE Tuncdemir, MA Ünal, H Mergen
Endocrine 2021
Deficiency of WFS1 leads to the impairment of AVP secretion under dehydration in male mice
J Kurimoto, H Takagi, T Miyata, Y Hodai, Y Kawaguchi, D Hagiwara, H Suga, T Kobayashi, M Sugiyama, T Onoue, Y Ito, S Iwama, R Banno, K Tanabe, Y Tanizawa, H Arima
Pituitary 2021
Lessons from animal models of endocrine disorders caused by defects of protein folding in the secretory pathway
Y Morishita, P Arvan
Molecular and Cellular Endocrinology 2020
Pharmacoperones as Novel Therapeutics for Diverse Protein Conformational Diseases
YX Tao, PM Conn
Physiological reviews 2018
Mice deficient for ERAD machinery component Sel1L develop central diabetes insipidus
Daniel Bichet, Yoann Lussier
Journal of Clinical Investigation 2017
Endoplasmic reticulum-associated degradation is required for systemic water homeostasis
Guojun Shi, Diane Somlo, Geun Hyang Kim, Cristina-Prescianotto Baschong, Shengyi Sun, Nicole Beuret, Qiaoming Long, Jonas Rutishauser, Peter Arvan, Martin Spiess, Ling Qi
Journal of Clinical Investigation 2017
Amyloid-like aggregation of provasopressin in diabetes insipidus and secretory granule sorting
N Beuret, F Hasler, C Prescianotto-Baschong, J Birk, J Rutishauser, M Spiess
BMC Biology 2017
Oxytocin signaling in the medial amygdala is required for sex discrimination of social cues
S Yao, J Bergan, A Lanjuin, C Dulac
eLife 2017
AVP-NPII gene mutations and clinical characteristics of the patients with autosomal dominant familial central diabetes insipidus
D Turkkahraman, E Saglar, T Karaduman, H Mergen
Pituitary 2015
A novel AVP gene mutation in a Turkish family with neurohypophyseal diabetes insipidus
M Ilhan, NO Tiryakioglu, O Karaman, E Coskunpinar, RS Yildiz, S Turgut, D Tiryakioglu, H Toprak, E Tasan
Journal of Endocrinological Investigation 2015
Nephrogenic diabetes insipidus: essential insights into the molecular background and potential therapies for treatment
HB Moeller, S Rittig, RA Fenton
Endocrine reviews 2013
Central diabetes insipidus associated with impaired renal aquaporin-1 expression in mice lacking liver X receptor β
C Gabbi, X Kong, H Suzuki, HJ Kim, M Gao, X Jia, H Ohnishi, Y Ueta, M Warner, Y Guan, JÅ Gustafsson
Proceedings of the National Academy of Sciences 2012
Familial forms of diabetes insipidus: clinical and molecular characteristics
M Babey, P Kopp, GL Robertson
Nature Reviews Endocrinology 2011
Misfolding of Mutated Vasopressin Causes ER-Retention and Activation of ER-Stress Markers in Neuro-2a Cells
Z Yan, A Hoffmann, EK Kaiser, WC Grunwald, DR Cool
Open neuroendocrinology journal (Online) 2011
Polyuria and polydipsia in a young child: diagnostic considerations and identification of novel mutation causing familial neurohypophyseal diabetes insipidus
MD Stephen, RG Fenwick, PG Brosnan
Pituitary 2010
Signal sequence mutation in autosomal dominant form of hypoparathyroidism induces apoptosis that is corrected by a chemical chaperone
R Datta, A Waheed, GN Shah, WS Sly
Proceedings of the National Academy of Sciences 2007
Oxidoreductase interactions include a role for ERp72 engagement with mutant thyroglobulin from the rdw/rdw rat dwarf
S Menon, J Lee, WA Abplanalp, SE Yoo, T Agui, SI Furudate, PS Kim, P Arvan
The Journal of biological chemistry 2007
A novel heterozygous missense mutation in the vasopressin moiety is identified in a Japanese person with neurohypophyseal diabetes insipidus
H Kobayashi, I Fujisawa, K Ikeda, C Son, T Iwakura, A Yoshimoto, M Kasahara, T Ishihara, Y Ogawa
Journal of Endocrinological Investigation 2006
Dominant-negative diabetes insipidus and other endocrinopathies
JA Phillips
Journal of Clinical Investigation 2003

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