Literature DB >> 29526809

An innate immune response and altered nuclear receptor activation defines the spinal cord transcriptome during alpha-tocopherol deficiency in Ttpa-null mice.

Carrie J Finno1, Matthew H Bordbari2, Giuliana Gianino2, Brittni Ming-Whitfield2, Erin Burns2, Janel Merkel2, Monica Britton3, Blythe Durbin-Johnson3, Erica A Sloma4, Marissa McMackin5, Gino Cortopassi5, Victor Rivas2, Marietta Barro2, Cecilia K Tran6, Ingrid Gennity5, Hadi Habib5, Libin Xu6, Birgit Puschner5, Andrew D Miller4.   

Abstract

Mice with deficiency in tocopherol (alpha) transfer protein gene develop peripheral tocopherol deficiency and sensory neurodegeneration. Ttpa-/- mice maintained on diets with deficient α-tocopherol (α-TOH) had proprioceptive deficits by six months of age, axonal degeneration and neuronal chromatolysis within the dorsal column of the spinal cord and its projections into the medulla. Transmission electron microscopy revealed degeneration of dorsal column axons. We addressed the potential pathomechanism of α-TOH deficient neurodegeneration by global transcriptome sequencing within the spinal cord and cerebellum. RNA-sequencing of the spinal cord in Ttpa-/- mice revealed upregulation of genes associated with the innate immune response, indicating a molecular signature of microglial activation as a result of tocopherol deficiency. For the first time, low level Ttpa expression was identified in the murine spinal cord. Further, the transcription factor liver X receptor (LXR) was strongly activated by α-TOH deficiency, triggering dysregulation of cholesterol biosynthesis. The aberrant activation of transcription factor LXR suppressed the normal induction of the transcription factor retinoic-related orphan receptor-α (RORA), which is required for neural homeostasis. Thus we find that α-TOH deficiency induces LXR, which may lead to a molecular signature of microglial activation and contribute to sensory neurodegeneration.
Copyright © 2018 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  RNA-sequencing; Transcription; Vitamin E

Mesh:

Substances:

Year:  2018        PMID: 29526809      PMCID: PMC5940542          DOI: 10.1016/j.freeradbiomed.2018.02.037

Source DB:  PubMed          Journal:  Free Radic Biol Med        ISSN: 0891-5849            Impact factor:   7.376


  54 in total

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Authors:  Yongjun Wang; Pamela M Rogers; Chen Su; Gabor Varga; Keith R Stayrook; Thomas P Burris
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Authors:  Kishorchandra Gohil; Bettina C Schock; Abhishek A Chakraborty; Yuko Terasawa; Jacob Raber; Robert V Farese; Lester Packer; Carroll E Cross; Maret G Traber
Journal:  Free Radic Biol Med       Date:  2003-12-01       Impact factor: 7.376

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Authors:  Carrie J Finno; Krista E Estell; Laramie Winfield; Scott Katzman; Matthew H Bordbari; Erin N Burns; Andrew D Miller; Birgit Puschner; Cecilia K Tran; Libin Xu
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3.  Single-Cell RNA-seq Reveals Profound Alterations in Mechanosensitive Dorsal Root Ganglion Neurons with Vitamin E Deficiency.

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4.  Breeder Diet Strategies for Generating Ttpa-Null and Wild-Type Mice with Low Vitamin E Status to Assess Neurological Outcomes.

Authors:  Katherine M Ranard; Matthew J Kuchan; John W Erdman
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5.  Natural and Synthetic α-Tocopherol Modulate the Neuroinflammatory Response in the Spinal Cord of Adult Ttpa-null Mice.

Authors:  Katherine M Ranard; Matthew J Kuchan; Janice M Juraska; John W Erdman
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  6 in total

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