Mevalonate Pathway
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A Mevalonate Pathway is a biosynthetic metabolic pathway.
- AKA: Mevalonic Acid Pathway, Isoprenoid Biosynthesis Pathway, HMG-CoA Reductase Pathway.
- Context:
- It can typically convert Acetyl-CoA Molecules to mevalonate pathway products.
- It can typically involve Sequential Enzymatic Reactions through mevalonate pathway enzymes.
- It can typically produce Isopentenyl Pyrophosphate as mevalonate pathway building block.
- It can typically branch to Multiple Biosynthetic Routes from mevalonate pathway intermediates.
- It can typically require ATP Molecules for mevalonate pathway phosphorylation steps.
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- It can often support Cholesterol Biosynthesis Processes via mevalonate pathway sterol branch.
- It can often enable Protein Prenylation through mevalonate pathway isoprenoid products.
- It can often provide Dolichol Synthesis for mevalonate pathway glycosylation support.
- It can often undergo Coordinate Regulation with mevalonate pathway gene expression.
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- It can range from being a Minimal Mevalonate Pathway to being an Extended Mevalonate Pathway, depending on its mevalonate pathway branch complexity.
- It can range from being a Constitutive Mevalonate Pathway to being an Inducible Mevalonate Pathway, depending on its mevalonate pathway regulation state.
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- It can utilize HMG-CoA Reductase Enzymes as mevalonate pathway rate-limiting enzyme.
- It can connect to Cholesterol Biosynthesis Processes through mevalonate pathway farnesyl branch.
- It can interface with Ubiquinone Synthesis Processes via mevalonate pathway polyisoprenoid route.
- It can support Heme A Synthesis Processes through mevalonate pathway farnesyl derivatives.
- It can enable Vitamin K2 Synthesis Processes via mevalonate pathway prenyl precursors.
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- Example(s):
- Mevalonate Pathway Locations, such as:
- Cytosolic Mevalonate Pathways, such as:
- Peroxisomal Mevalonate Pathways, such as:
- Mevalonate Pathway States, such as:
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- Mevalonate Pathway Locations, such as:
- Counter-Example(s):
- MEP Pathways, which produce isoprenoid precursors without mevalonate intermediates.
- Fatty Acid Synthesis Pathways, which use acetyl-CoA for lipid production without mevalonate formation.
- Shikimate Pathways, which produce aromatic compounds rather than isoprenoid structures.
- See: Biosynthetic Metabolic Pathway, HMG-CoA Reductase Enzyme, Cholesterol Biosynthesis Process, Isoprenoid Metabolism, Metabolic Pathway.