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Difference between revisions of "Goldstein 1990 Nature"

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(Created page with "{{Publication |title=Goldstein JL, Brown MS (1990) Regulation of the mevalonate pathway. Nature 343:425-30. |info=[https://pubmed.ncbi.nlm.nih.gov/1967820/ PMID:1967820] |auth...")
 
 
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|abstract=The mevalonate pathway produces isoprenoids that are vital for diverse cellular functions, ranging from cholesterol synthesis to growth control. Several mechanisms for feedback regulation of low-density-lipoprotein receptors and of two enzymes involved in mevalonate biosynthesis ensure the production of sufficient mevalonate for several end-products. Manipulation of this regulatory system could be useful in treating certain forms of cancer as well as heart disease.
|abstract=The mevalonate pathway produces isoprenoids that are vital for diverse cellular functions, ranging from cholesterol synthesis to growth control. Several mechanisms for feedback regulation of low-density-lipoprotein receptors and of two enzymes involved in mevalonate biosynthesis ensure the production of sufficient mevalonate for several end-products. Manipulation of this regulatory system could be useful in treating certain forms of cancer as well as heart disease.
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== Cited by ==
{{Template:Cited by Komlodi 2021 MitoFit CoQ}}
 
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|additional=MitoFit 2021 CoQ
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Latest revision as of 16:15, 3 November 2021

Publications in the MiPMap
Goldstein JL, Brown MS (1990) Regulation of the mevalonate pathway. Nature 343:425-30.

» PMID:1967820

Goldstein JL, Brown MS (1990) Nature

Abstract: The mevalonate pathway produces isoprenoids that are vital for diverse cellular functions, ranging from cholesterol synthesis to growth control. Several mechanisms for feedback regulation of low-density-lipoprotein receptors and of two enzymes involved in mevalonate biosynthesis ensure the production of sufficient mevalonate for several end-products. Manipulation of this regulatory system could be useful in treating certain forms of cancer as well as heart disease.

Cited by

  • Komlódi T, Cardoso LHD, Doerrier C, Moore AL, Rich PR, Gnaiger E (2021) Coupling and pathway control of coenzyme Q redox state and respiration in isolated mitochondria. Bioenerg Commun 2021.3. https://doi.org/10.26124/bec:2021-0003


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MitoFit 2021 CoQ