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Fatty acids -- Metabolism -- Regulation
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BB 450_550 Lecture 14 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
muscular contraction. Highlights Allostery and
Regulation
1. Aspartate transcarbamoylase (ATCase) is an
BB 450_550 Lecture 15 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
/
Regulation
II 1. Protein kinase A is an enzyme involved in covalent modification of enzymes. Like all kinases
#25 Biochemistry Glycogen Metabolism I Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 25 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
a reciprocal regulator of the pathways. Reciprocal
regulation
of catabolic and anabolic pathways is
#24 Biochemistry Gluconeogenesis Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 24 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
Gluconeogenesis 1. Glycerol is a breakdown product of fat
metabolism
. Glycerol can be metabolized in glycolysis by
#12 Biochemistry Catalytic Mechanisms I Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 12 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
histidine is, in turn, hydrogen bonded to an aspartic
acid
residue in the active site. Each of the hydrogen
#05 Biochemistry Protein Tertiary_Quaternary Structure Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 5 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
', which refers to a non-amino
acid
containing group that binds to a protein and augments its function. 8
#18 Biochemistry Signaling I Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 18 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
proteins on the surface of flu viruses. To enter a cell, the virus must cleave the sialic
acid
off with a
#13 Biochemistry Catalytic Mechanisms II Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 13 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
. 4. Aspartyl proteases use two aspartic
acid
side chains to hold water in place and use an ion of it
#22 Biochemistry Glycolysis II Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 22 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
inactivated by phosphorylation, as will be seen in glycogen
metabolism
. 3. The phenomenon of redox balancing
#04 Biochemistry Protein Primary_Secondary Structure Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 4 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
disrupt alpha helices. Thus, one can reasonably accurately predict from an amino
acid
sequence which
#23 Biochemistry Glycolysis III Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 23 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
. Deficiency of the enzyme lactase leads to lactose intolerance 5.
Regulation
of glycolysis is controlled by
#11 Biochemistry Enzymes III Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 11 Highlights.pdf
Creator:
Ahern, Kevin
#17 Biochemistry Carbohydrates II Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 17 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
, hyaluronic
acid
, and others. 11. Proteoglycans are complexes of proteins and glycosaminoglycans that form
BB 450_550 Lecture 16 Highlights.pdf
Creator:
Ahern, Kevin
#20 Biochemistry Metabolic Controls_Energy Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 20 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
Metabolic Control 1.
Metabolism
is literally the chemistry of life. Schematic diagrams of
metabolism
are the
#03 Biochemistry Amino Acids Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 3 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
undissociated
acid
(HA) equals that of the salt (A-)- (
Acid
= Salt). The Henderson Hasselbalch equation further
#06 Biochemistry Protein Purification Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 6 Highlights.pdf
Creator:
Ahern, Kevin
#08 Biochemistry Hemoglobin Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 8 Highlights.pdf
Creator:
Ahern, Kevin
#09 Biochemistry Hemoglobin II_Enzymes I Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 9 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
this to carbonic
acid
by carbonic anhydrase. Carbonic
acid
readily loses a proton, becoming bicarbonate
#19 Biochemistry Signaling II Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 19 Highlights.pdf
Creator:
Ahern, Kevin
#10 Biochemistry Enzymes II Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 10 Highlights.pdf
Creator:
Ahern, Kevin
#07 Biochemistry Protein Characterization Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 7 Highlights.pdf
Creator:
Ahern, Kevin
#01 Biochemistry Introductory Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 1 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
hydrogen ion concentration and the stronger the
acid
. pH + pOH = 14. The pOH is the negative log of the
#21 Biochemistry Glycolysis Lecture for Kevin Ahern's BB 450_550.mp4
Creator:
Ahern, Kevin
BB 450_550 Lecture 21 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
. The energy of the oxidation is used to put phosphate onto the
acid
produced by the oxidation. The
#53 Biochemistry Sensory Systems II Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 53 Highlights.pdf
Creator:
Ahern, Kevin
#52 Biochemistry Sensory Systems Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 52 Highlights.pdf
Creator:
Ahern, Kevin
#51 Biochemistry Gene Expression III Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 51 Highlights.pdf
Creator:
Ahern, Kevin
#50 Biochemistry Gene Expression II Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 50 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
transcriptional
regulation
of the lac operon is accomplished by a protein known as the lac repressor. It binds the
#49 Biochemistry Translation III_Gene Expression I Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 49 Highlights.pdf
Creator:
Ahern, Kevin
#48 Biochemistry Translation II Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 48 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
amine of the incoming (new) amino
acid
and the entire complex is, as a result, attached to the 'new
#47 Biochemistry Transcription III _ Translation I Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 47 Highlights.pdf
Creator:
Ahern, Kevin
#46 Biochemistry Transcription II Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 46 Highlights.pdf
Creator:
Ahern, Kevin
#45 Biochemistry DNA Repair _ Transcription I Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 45 Highlights.pdf
Creator:
Ahern, Kevin
#43 Biochemistry DNA Replication III Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 43 Highlights.pdf
Creator:
Ahern, Kevin
#42 Biochemistry DNA Replication II Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 42 Highlights.pdf
Creator:
Ahern, Kevin
#41 Biochemistry DNA Replication I Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 41 Highlights.pdf
Creator:
Ahern, Kevin
#40 Biochemistry Nucleotide Metabolism II Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 40 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
- Nucleotide
Metabolism
II 1. Ribonucleotide reductase (RNR) catalyzes the formation of deoxyribonucleotides
#39 Biochemistry Nucleotide Metabolism I Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 39 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
BB 451/551 Lecture 39 Highlights Nucleotide
Metabolism
#38 Biochemistry Fat_Fatty Acid Metabolism II Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 38 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
BB 451/551 Lecture 38 Highlights
Fatty
Acid
#37 Biochemistry Fat_Fatty Acid Metabolism I Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 37 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
Acid
Oxidation 1. Fats are broken down to
fatty
acids and glycerol by enzymes known as lipases. One of
#36 Biochemistry Cholesterol in the Body Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 36 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
actual levels depend on all of these.
Fatty
Acid
Oxidation 1. In the digestive system, bile acids and
#35 Biochemistry Phosphoglycerides, Cholesterol, Steroids Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 35 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
Sphingolipid
Metabolism
1. Phosphatidic
acid
is an immediate precursor of CDP-diacylglycerol, which is a
#34 Biochemistry Oxidative Phosphorylation_Respiratory Control Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 34 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
protons. When electron transport stops, NADH accumulates and the citric
acid
stops. Conversely, if one
#33 Biochemistry Electron Transport_Oxidative Phosphorylation Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 33 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
NADH and FADH2 will not be reoxidized. For these reasons, the citric
acid
cycle will not run either
#32 Biochemistry Nerve Transmission_Mitochondria Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 32 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
here where the enzymes of the citric
acid
cycle and
fatty
acid
oxidation are found. 14. Remember that
BB 451_551 Lecture 31 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
, more unsaturated
fatty
acids make for membranes that retain fluidity at lower temperatures compared to
#31 Biochemistry Membrane Transport Lecture for Kevin Ahern's BB 451_551.M4A
Creator:
Ahern, Kevin
#30 Biochemistry Lipids and Membranes Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 30 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
bent shape for unsaturated
fatty
acid
. 3. Glycerophospholipids (also called phosphoglycerides by your
#29 Biochemistry Citric Acid Cycle II Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 29 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
reaction for a
fatty
acid
. 3. Addition of water to fumarate (catalyzed by fumarase) yields L-malate. 4
#28 Biochemistry Citric Acid Cycle Lecture for Kevin Ahern's BB 451_551.mp4
Creator:
Ahern, Kevin
BB 451_551 Lecture 28 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
into acetyl-Coa for the citric
acid
cycle. This enzyme complex is in the mitochondrion and requires
BB 450_550 Lecture 27 Highlights.pdf
Creator:
Ahern, Kevin
#27 Biochemistry Glycogen Metabolism III _ Metabolic Melodies Lecture for Kevin Ahern's BB 450_550.M4A
Creator:
Ahern, Kevin
BB 450_550 Lecture 26 Highlights.pdf
Creator:
Ahern, Kevin
Full Text:
. GPa is MORE ACTIVE and GSb is LESS ACTIVE. Thus, reciprocal
regulation
of glycogen
metabolism
is
#26 Biochemistry Glycogen Metabolism II Lecture for Kevin Ahern's BB 450_550.M4A
Creator:
Ahern, Kevin
#02 Biochemistry Buffers Lecture for Kevin Ahern's BB 450_550.M4A
Creator:
Ahern, Kevin
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