Lipid Metabolism Flashcards
Fed vs fasted state lipid metabolism
Fed state: insulin drives the synthesis of cholesterol and fatty acyl-CoA. FA transported as part
Fasted state: epinephrine drive sythesis of acetyl-CoA from fatty acids. FA transported bound to albumin.
Rate limiting enzyme in in fatty acid biosynthesis
acetyl-CoA carboxylase.
Acetyl-CoA carboxylase
rate limiting enzyme in fatty acid biosynthesis
catalyzes the formation of malonyl CoArom Acetyl-CoA
cofactor is biotin and serves as the carrier of activated CO2
Requirements of fatty acid biosynthesis
1) acetyl groups must be transported from the mitochondria into the cytoplasm. Citrate is the carrier, it also activates acetyl-CoA carboxylase
2) Fatty acid synthase complex. utilizes 1 acetyl coA and 7 malonyl-CoA to synthesize even numbered saturated fatty acids
3) NADPH- generated by PPP.and the cytoplasmic reaction of malate to pyruvate.
4) Biotin- carrier of activated CO2
Citrate
stimulates fatty acids synthesis
transports acetyl groups from the mitochondria
allosterically activates acetyl-CoA carboxylase
citrate shuttle
pyruvate from glycolysis goes to the mitochondria. oxaloacetate and acetyl coA is generated. Both are converted to citrate so they can be transported to the cytoplasm.
the cytoplasmic citrate can be converted to oxaloacetate, and back to pyruvate to enter the mito again; or it can be converted to AcCoA and participate in fatty acid synthesis
Short term regulation of Acetyl CoA carboxylase
- this reaction is irreversible *
promoters: citrate, insulin, biotin
inhibitors: palmitoyl CoA, glucagon, epi, AMP
Malonyl CoA
product of the reaction catalyzed by AcCoA carboxylase
only physiological inhibitor of Carnatine palmitoyl transferase-1
key regulator of fatty acid oxidation and ketone body formation. reduction in malonyl CoA increaes fatty acid oxidation.
Long term regulation of AcCoA carboxylase
increased enzyme synth: high carb diet, insulin, thyroid hormone, fat free diet
Decreased enzyme synth: high fat diet (via low insulin and high glucagon), fasting, glucagon
Fatty acid synthase complex (FAS)
catalyzes the formation of fatty acids from:
1 acetyl CoA + 7 malonyl CoA
catylyzes 7 reaction cycles
Stochiometry of the FAS reaction
AcCoA (2C) + 7 malonyl CoA (21C) → palmitate (16C) + 7CO2 + 14NAD+ + 8CoA +6H2O
Short term regulation of FAS
allosteric activator: fructose 1,6 BP
Long term regulation of FAS
increased enzyme synth: high carb diet via insulin, fat free diet
decreased enzyme synthesis: glucagon, high fat diet via low insulin and high glucagon, fasting
Essential fatty acids
linoleate and alpha linolenate
omega -3
why can’t mamals synthesize linoleic acid?
Cannot synthesize double bonds in fatty acids beyond carbons 9 and 10