What is the difference between ubiquinone (Q) and ubiquinol (QH2) - Q is fully oxidized so it has
no electrons, QH2 is fully reduced so it has 2 more electrons and H+ than Q
What are the other sequentially acting electron carriers in the respiratory chain besides NAD and
flavoproteins - Hydrophobic quinone (ubiquinone, Q), Cytochrome (contain iron), Iron-sulfur
proteins
What is the final stage of cellular respiration and where does it happen - Oxidative
phosphorylation, in the mitochondria
What does oxidative phosphorylation couple - The oxidation of NADH or FADH2 to the reduction
of O2 to get H2O and formation of ATP
Where in the mitochondria are the components of the respiratory chain - Inner membrane
Briefly summarize the process of the respiratory chain - 1. Electrons flow through a chain of
membrane-bound carriers
2. This results in protons (H+) pumped from matrix to inter membrane space
3. H+ gradient drives ATP synthesis
Electrons are transferred from a substrate to which universal electron acceptors - NAD+, NADP+,
FAD, FMN
NAD+ or NADP+ accepts what and releases what, how many electrons at once - Accepts H- (H+
and 2 electrons), picks up a pair of electrons at once, releases a proton
How many electrons can FAD or FMN accept and transfer at a time - One or two electrons AT A
TIMEDescribe the characteristics of ubiquinone AKA Coenzyme Q [Q] - Lipid-soluble, small, freely
diffusible (can move around everywhere)
How many electrons can Q accept and what does it carry - Accepts 1 or 2 electrons, carries a
proton with each electron
Cytochromes have how many classes and what distinguishes between them - 3 classes: a,b,c,
different R groups differentiates between the classes
What do all cytochromes have - An iron-containing heme prosthetic group
The iron group in cytochromes can be in what two oxidative states - Fe2+= has extra electron, and
Fe3+= gives up electron
How are heme groups in cytochromes bound - Covalently or non-covalently but either way,
TIGHTLY BOUND
Cytochrome class a, b and some of c have what type of proteins - Integral (inner membrane)
Cytochrome class c has what type of proteins - Soluble and mobile (outer surface of inner
membrane)
The names of cytochromes are sometimes based on what - Absorbance maximum (e.g. b562)
The iron in iron-sulfur proteins are associated with what - Inorganic sulfur, cysteine, or both
The iron is the electron carrier in iron-sulfur proteins, how many electrons can one iron carry - 1
iron=1 electron carriedThe electron carriers of the respiratory chain are organized into supramolecular complexes that can be
separated into what - 4 individual complexes and ATP synthase
What is the enzyme complex in Complex I - "NADH: ubiquinone oxidoreductase"
Where does Complex I receive electrons from and where is it delivered to - from NADH, delivered
to Q
Electrons move along Complex I until the end where the electrons do what - Each electron teams
up with Q, 2 electrons given up to make QH2
What is the enzyme complex for Complex II - Succinate dehydrogenase from CAC
In Complex II, what receives electrons and where is it found in the mitochondria - FAD, it is
embedded (never leaves) in the matrix
In the CAC, succinate is oxidized to fumarate and is coupled to what - the reduction of FAD to
FADH2
From FADH2, where are the electrons transferred to - to Q, which becomes QH2
Is there any H+ pumping in Complex II - No
During B-oxidation from FAs, electrons are transferred from the substrate to what - FAD, making
FADH2
Electrons are then transferred from FADH2 to what - Q
What happens to the FAD electrons from glycolysis - The complex, Glycerol-3-phosphate
dehydrogenase gives electrons to FAD, making FADH2, Q docks to receive electrons and becomes QH2,
then goes back to FADUbiquinol (QH2) can diffuse to what - Complex III
Each subunit of complex III has 11 different subunits, including which two - Cytochromes b and c1
Vista previa del contenido
Biochem Exam 3 Lecture 1 MCPHS
What is the difference between ubiquinone (Q) and ubiquinol (QH2) - Q is fully oxidized so it has
no electrons, QH2 is fully reduced so it has 2 more electrons and H+ than Q
What are the other sequentially acting electron carriers in the respiratory chain besides NAD and
flavoproteins - Hydrophobic quinone (ubiquinone, Q), Cytochrome (contain iron), Iron-sulfur
proteins
What is the final stage of cellular respiration and where does it happen - Oxidative
phosphorylation, in the mitochondria
What does oxidative phosphorylation couple - The oxidation of NADH or FADH2 to the reduction
of O2 to get H2O and formation of ATP
Where in the mitochondria are the components of the respiratory chain - Inner membrane
Briefly summarize the process of the respiratory chain - 1. Electrons flow through a chain of
membrane-bound carriers
2. This results in protons (H+) pumped from matrix to inter membrane space
3. H+ gradient drives ATP synthesis
Electrons are transferred from a substrate to which universal electron acceptors - NAD+, NADP+,
FAD, FMN
NAD+ or NADP+ accepts what and releases what, how many electrons at once - Accepts H- (H+
and 2 electrons), picks up a pair of electrons at once, releases a proton
How many electrons can FAD or FMN accept and transfer at a time - One or two electrons AT A
TIME