4.8 Article

snoRNA U17 Regulates Cellular Cholesterol Trafficking

Journal

CELL METABOLISM
Volume 21, Issue 6, Pages 855-867

Publisher

CELL PRESS
DOI: 10.1016/j.cmet.2015.04.010

Keywords

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Funding

  1. Washington University Diabetes Research Center [P30 DK020579]
  2. NIH [T32 HL727534]
  3. Science Education Grant from the Howard Hughes Medical Institute
  4. [HL1033001]
  5. [DK064989]

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Cholesterol is required for the growth and viability of mammalian cells and is an obligate precursor for steroid hormone synthesis. Using a loss-of-function screen for mutants with defects in intracellular cholesterol trafficking, a Chinese hamster ovary cell mutant with haploinsufficiency of the U17 snoRNA was isolated. U17 is an H/ACA orphan snoRNA, for which a function other than ribosomal processing has not previously been identified. Through expression profiling, we identified hypoxia-upregulated mitochondrial movement regulator (HUMMR) mRNA as a target that is negatively regulated by U17 snoRNA. Upregulation of HUMMR in U17 snoRNA-deficient cells promoted the formation of ER-mitochondrial contacts, decreasing esterification of cholesterol and facilitating cholesterol trafficking to mitochondria. U17 snoRNA and HUMMR regulate mitochondrial synthesis of steroids in vivo and are developmentally regulated in steroidogenic tissues, suggesting that the U17 snoRNA-HUMMR pathway may serve a previously unrecognized, physiological role in gonadal tissue maturation.

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