Literature DB >> 12153465

Autophagy in hypothalamic neurones of rats expressing a familial neurohypophysial diabetes insipidus transgene.

J Davies1, D Murphy.   

Abstract

We have tested the hypothesis that familial neurohypophysial diabetes insipidus (FNDI) is initiated by a process of autophagy. FNDI is a dominant, progressive inherited disorder characterized by pronounced drinking and urination caused by loss of secretion of antidiuretic hormone (vasopressin). In rats expressing an FNDI mutant transgene (Cys67stop) in vasopressin magnocellular neurones, the mutant protein fails to enter the regulated secretory pathway, and accumulates in a swollen and distended endoplasmic reticulum (ER) that also contains wild-type, endogenous vasopressin. Transmission electron microscopy suggested that these are autophagic vesicles. We have now examined the expression of vesicular markers in our transgenic rats, and demonstrate that activation of autolysosomal processes is a consequence of the expression of Cys67stop. Swollen vesicles containing Cys67stop are immunoreactive for cathepsin D (a lysosomal protease), endolyn (a marker of late endosomes) and lysosomal associated membrane protein 1, suggesting that they may be degradative autolysosomes. In addition, there is an up-regulation of lysosomal markers specifically in cells expressing Cys67stop. The expression of Cys67stop affects neither the trans-Golgi network nor early endosomes. These data support the proposal that Cys67stop mutant protein aggregates within the ER, which is targeted for lysosomal degradation by autophagy.

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Year:  2002        PMID: 12153465     DOI: 10.1046/j.1365-2826.2002.00822.x

Source DB:  PubMed          Journal:  J Neuroendocrinol        ISSN: 0953-8194            Impact factor:   3.627


  6 in total

1.  Mutations in the AVPR2, AVP-NPII, and AQP2 genes in Turkish patients with diabetes insipidus.

Authors:  Duygu Duzenli; Emel Saglar; Ferhat Deniz; Omer Azal; Beril Erdem; Hatice Mergen
Journal:  Endocrine       Date:  2012-05-29       Impact factor: 3.633

Review 2.  Role of hypothalamic autophagy in the control of whole body energy balance.

Authors:  Min-Seon Kim; Wenying Quan; Myung-Shik Lee
Journal:  Rev Endocr Metab Disord       Date:  2013-12       Impact factor: 6.514

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

Authors:  Theron A Russell; Masafumi Ito; Mika Ito; Richard N Yu; Fred A Martinson; Jeffrey Weiss; J Larry Jameson
Journal:  J Clin Invest       Date:  2003-12       Impact factor: 14.808

4.  Deficiency of WFS1 leads to the impairment of AVP secretion under dehydration in male mice.

Authors:  Junki Kurimoto; Hiroshi Takagi; Takashi Miyata; Yuichi Hodai; Yohei Kawaguchi; Daisuke Hagiwara; Hidetaka Suga; Tomoko Kobayashi; Mariko Sugiyama; Takeshi Onoue; Yoshihiro Ito; Shintaro Iwama; Ryoichi Banno; Katsuya Tanabe; Yukio Tanizawa; Hiroshi Arima
Journal:  Pituitary       Date:  2021-03-05       Impact factor: 4.107

5.  Arginine vasopressin neuronal loss results from autophagy-associated cell death in a mouse model for familial neurohypophysial diabetes insipidus.

Authors:  D Hagiwara; H Arima; Y Morishita; L Wenjun; Y Azuma; Y Ito; H Suga; M Goto; R Banno; Y Sugimura; A Shiota; N Asai; M Takahashi; Y Oiso
Journal:  Cell Death Dis       Date:  2014-03-27       Impact factor: 8.469

Review 6.  Protein Aggregation in the ER: Calm behind the Storm.

Authors:  Haisen Li; Shengyi Sun
Journal:  Cells       Date:  2021-11-28       Impact factor: 7.666

  6 in total

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