Literature DB >> 18172410

Neurodegeneration in mice resulting from loss of functional selenoprotein P or its receptor apolipoprotein E receptor 2.

William M Valentine1, Ty W Abel, Kristina E Hill, Lori M Austin, Raymond F Burk.   

Abstract

Selenoprotein P (Sepp1) is involved in selenium homeostasis. Mice with a deletion of Sepp1, replacement of it by the shortened form Sepp1(Delta240-361), or deletion of its receptor apolipoprotein E receptor 2 develop severe neurologic dysfunction when fed low-selenium diet. Because the brainstems of Sepp1(-/-) mice had been observed to contain degenerated axons, a study of these 3 strains was made under selenium-deficient and high-selenium (control) conditions. Selenium-deficient wild-type mice were additional controls. Serial sections of the brain were evaluated with amino cupric silver degeneration and anti-glial fibrillary acidic protein stains. All 3 strains with altered Sepp1 metabolism developed severe axonal injury when fed selenium deficient diet. This injury was mitigated by high-selenium diet and was absent from selenium-deficient wild-type mice. Injury was most severe in Sepp1(-/-) mice, with staining in at least 6 brain regions. Injury in Sepp1(Delta240-361) and apolipoprotein E receptor 2 mice was less severe and occurred only in areas injured in Sepp1(-/-) mice, suggesting a common selenium-related etiology. Affected brain regions were primarily associated with auditory and motor functions, consistent with the clinical signs. Those areas have high metabolic rates. We conclude that interference with Sepp1 function damages auditory and motor areas, at least in part by restricting selenium supply to the brain regions.

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Year:  2008        PMID: 18172410     DOI: 10.1097/NEN.0b013e318160f347

Source DB:  PubMed          Journal:  J Neuropathol Exp Neurol        ISSN: 0022-3069            Impact factor:   3.685


  33 in total

1.  Progression of neurodegeneration and morphologic changes in the brains of juvenile mice with selenoprotein P deleted.

Authors:  Samuel W Caito; Dejan Milatovic; Kristina E Hill; Michael Aschner; Raymond F Burk; William M Valentine
Journal:  Brain Res       Date:  2011-05-05       Impact factor: 3.252

2.  Mutations disrupting selenocysteine formation cause progressive cerebello-cerebral atrophy.

Authors:  Orly Agamy; Bruria Ben Zeev; Dorit Lev; Barak Marcus; Dina Fine; Dan Su; Ginat Narkis; Rivka Ofir; Chen Hoffmann; Esther Leshinsky-Silver; Hagit Flusser; Sara Sivan; Dieter Söll; Tally Lerman-Sagie; Ohad S Birk
Journal:  Am J Hum Genet       Date:  2010-10-08       Impact factor: 11.025

3.  Deletion of selenoprotein P results in impaired function of parvalbumin interneurons and alterations in fear learning and sensorimotor gating.

Authors:  M W Pitts; A V Raman; A C Hashimoto; C Todorovic; R A Nichols; M J Berry
Journal:  Neuroscience       Date:  2012-02-21       Impact factor: 3.590

4.  Changes in the expression of selenoproteins in mesial temporal lobe epilepsy patients.

Authors:  Ayşe Yüzbaşioğlu; Hülya Karataş; Yasemin Gürsoy-Ozdemir; Serap Saygi; Nejat Akalan; Figen Söylemezoğlu; Turgay Dalkara; Y Cetin Kocaefe; Meral Ozgüç
Journal:  Cell Mol Neurobiol       Date:  2009-12       Impact factor: 5.046

5.  Selenoprotein P and apolipoprotein E receptor-2 interact at the blood-brain barrier and also within the brain to maintain an essential selenium pool that protects against neurodegeneration.

Authors:  Raymond F Burk; Kristina E Hill; Amy K Motley; Virginia P Winfrey; Suguru Kurokawa; Stuart L Mitchell; Wanqi Zhang
Journal:  FASEB J       Date:  2014-04-23       Impact factor: 5.191

6.  Production of selenoprotein P (Sepp1) by hepatocytes is central to selenium homeostasis.

Authors:  Kristina E Hill; Sen Wu; Amy K Motley; Teri D Stevenson; Virginia P Winfrey; Mario R Capecchi; John F Atkins; Raymond F Burk
Journal:  J Biol Chem       Date:  2012-10-04       Impact factor: 5.157

7.  Higher selenium status is associated with adverse blood lipid profile in British adults.

Authors:  Saverio Stranges; Martin Laclaustra; Chen Ji; Francesco P Cappuccio; Ana Navas-Acien; Jose M Ordovas; Margaret Rayman; Eliseo Guallar
Journal:  J Nutr       Date:  2009-11-11       Impact factor: 4.798

Review 8.  The human selenoproteome: recent insights into functions and regulation.

Authors:  M A Reeves; P R Hoffmann
Journal:  Cell Mol Life Sci       Date:  2009-04-28       Impact factor: 9.261

9.  Neuronal selenoprotein expression is required for interneuron development and prevents seizures and neurodegeneration.

Authors:  Eva K Wirth; Marcus Conrad; Jochen Winterer; Christian Wozny; Bradley A Carlson; Stephan Roth; Dietmar Schmitz; Georg W Bornkamm; Vincenzo Coppola; Lino Tessarollo; Lutz Schomburg; Josef Köhrle; Dolph L Hatfield; Ulrich Schweizer
Journal:  FASEB J       Date:  2009-11-04       Impact factor: 5.191

Review 10.  Selenoprotein P-expression, functions, and roles in mammals.

Authors:  Raymond F Burk; Kristina E Hill
Journal:  Biochim Biophys Acta       Date:  2009-04-01
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