Literature DB >> 9322950

Emergence of an isolated arginine vasopressin (AVP) response to stress after repeated restraint: a study of both AVP and corticotropin-releasing hormone messenger ribonucleic acid (RNA) and heteronuclear RNA.

X M Ma1, A Levy, S L Lightman.   

Abstract

The hypothalamic-pituitary-adrenal axis adapts to periods of chronic or repeated stress. We have now investigated whether there is any differential effect of repeated immobilization stress on CRH and arginine vasopressin (AVP) gene transcription in the hypothalamic paraventricular nucleus (PVN), using probes for both intronic and exonic sequences of the AVP and CRH genes. Daily restraint for 13 days had no significant affect on basal corticosterone level, CRH heteronuclear RNA (hnRNA), CRH messenger RNA (mRNA), AVP hnRNA, or AVP mRNA. After the final episode of acute restraint, on day 14, there was a rapid increase in plasma corticosterone and AVP hnRNA level in the parvocellular subdivision of the PVN, a slower increase in AVP mRNA level in the parvocellular subdivision of the PVN, but no significant change in either CRH hnRNA or CRH mRNA in the PVN. The increase in AVP hnRNA and mRNA was specific to the parvocellular PVN, because there was no change in either transcript in the magnocellular cells of this nucleus. This isolated response is in marked contrast to naive rats, which show a predominant CRH hnRNA and mRNA response, and infers that part of the adaptation to repeated stress results from a down-regulation of CRH gene responsiveness with maintenance or even a compensatory increase in the AVP gene response.

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Year:  1997        PMID: 9322950     DOI: 10.1210/endo.138.10.5446

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  39 in total

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3.  Interaction of stress, corticotropin-releasing factor, arginine vasopressin and behaviour.

Authors:  Eléonore Beurel; Charles B Nemeroff
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4.  Exploring the involvement of Tac2 in the mouse hippocampal stress response through gene networking.

Authors:  Mike Hook; Fuyi Xu; Elena Terenina; Wenyuan Zhao; Athena Starlard-Davenport; Pierre Mormede; Byron C Jones; Megan K Mulligan; Lu Lu
Journal:  Gene       Date:  2019-02-12       Impact factor: 3.688

5.  Glucocorticoid negative feedback selectively targets vasopressin transcription in parvocellular neurosecretory neurons.

Authors:  K J Kovács; A Földes; P E Sawchenko
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6.  Mapping cerebral blood flow changes during auditory-cued conditioned fear in the nontethered, nonrestrained rat.

Authors:  D P Holschneider; J Yang; T R Sadler; P T Nguyen; T K Givrad; J-M I Maarek
Journal:  Neuroimage       Date:  2005-10-10       Impact factor: 6.556

Review 7.  The role of maternal care in shaping CNS function.

Authors:  Benjamin Nephew; Chris Murgatroyd
Journal:  Neuropeptides       Date:  2013-10-24       Impact factor: 3.286

8.  A novel mouse model for acute and long-lasting consequences of early life stress.

Authors:  Courtney J Rice; Curt A Sandman; Mohammed R Lenjavi; Tallie Z Baram
Journal:  Endocrinology       Date:  2008-06-19       Impact factor: 4.736

9.  The arginine vasopressin and corticotrophin-releasing hormone gene transcription responses to varied frequencies of repeated stress in rats.

Authors:  X M Ma; S L Lightman
Journal:  J Physiol       Date:  1998-07-15       Impact factor: 5.182

10.  Influence of hypothalamic IL-6/gp130 receptor signaling on the HPA axis response to chronic stress.

Authors:  Milena Girotti; Jennifer J Donegan; David A Morilak
Journal:  Psychoneuroendocrinology       Date:  2012-12-04       Impact factor: 4.905

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