Interactions between mitoNEET and NAF-1 in cells

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This article uses yeast two-hybrid to demonstrate through vivo bimolecular fluorescence complementation (BiFC), direct coupling analysis (DCA), RNA-sequencing, ROS and iron imaging, and single and double shRNA lines with suppressed mNT, NAF-1 and mNT/NAF-1 expression, that mNT and NAF-1 directly interact in mammalian cells and could function in the same cellular pathway.

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18 p.

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Karmi, Ola; Holt, Sarah H.; Song, Luhua; Tamir, Sagi; Luo, Yuting; Bai, Fang et al. April 20, 2017.

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This article is part of the collection entitled: UNT Scholarly Works and was provided by UNT College of Arts and Sciences to Digital Library, a digital repository hosted by the UNT Libraries. It has been viewed 22 times . More information about this article can be viewed below.

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This article uses yeast two-hybrid to demonstrate through vivo bimolecular fluorescence complementation (BiFC), direct coupling analysis (DCA), RNA-sequencing, ROS and iron imaging, and single and double shRNA lines with suppressed mNT, NAF-1 and mNT/NAF-1 expression, that mNT and NAF-1 directly interact in mammalian cells and could function in the same cellular pathway.

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18 p.

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  • PLOS ONE, 2017. San Francisco, CA: Public Library of Science

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  • Publication Title: PLOS ONE
  • Volume: 12
  • Issue: 4
  • Pages: 1-18
  • Peer Reviewed: Yes

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UNT Scholarly Works

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  • April 20, 2017

Added to The UNT Digital Library

  • May 11, 2017, 4:15 p.m.

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Karmi, Ola; Holt, Sarah H.; Song, Luhua; Tamir, Sagi; Luo, Yuting; Bai, Fang et al. Interactions between mitoNEET and NAF-1 in cells, article, April 20, 2017; San Francisco, California. (digital.library.unt.edu/ark:/67531/metadc974468/: accessed May 27, 2018), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT College of Arts and Sciences.