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Biochemistry: Cellular Structure, Energy, and Oxygen Transport
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What are monomers and polymers in cellular biochemistry?
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What are monomers and polymers in cellular biochemistry?
Monomers
are small molecules that join to form
polymers
, which are large macromolecules essential for cellular structure and function.
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이 집합의 용어 (20)
하이드의 정의
What are monomers and polymers in cellular biochemistry?
Monomers
are small molecules that join to form
polymers
, which are large macromolecules essential for cellular structure and function.
Difference between prokaryotic and eukaryotic cells?
Prokaryotic cells lack a nucleus and have a single circular chromosome; eukaryotic cells have a nucleus and multiple linear chromosomes.
What is the plasma membrane's role in a cell?
The plasma membrane surrounds the cell, maintaining homeostasis by regulating nutrient and ion transport and enabling energy conversion.
State the First Law of Thermodynamics in biological systems.
Energy cannot be created or destroyed, only transformed from one form to another, maintaining total energy constant.
What does the Second Law of Thermodynamics imply for living cells?
Energy transfer increases entropy (disorder), so living cells require constant energy input to maintain order.
Define Gibbs free energy change (ΔG) and its significance.
ΔG
is the energy available to do work;
ΔG<0
means spontaneous (exergonic),
ΔG>0
means non-spontaneous (endergonic).
How is ATP hydrolysis coupled to cellular reactions?
ATP hydrolysis releases energy (exergonic) that drives endergonic reactions like macromolecule synthesis by sharing intermediates.
What is metabolism and its two main types?
Metabolism
includes
catabolism
(breaking down molecules to generate ATP) and
anabolism
(using ATP to build macromolecules).
What is the role of photosynthesis in energy conversion?
Photosynthesis converts light energy into chemical energy (ATP) used for carbon fixation to synthesize glucose.
Describe the oxygen-evolving complex in photosystem II.
The Mn4CaO5 cluster catalyzes water splitting, releasing O2 and protons during photosynthesis.
What is the function of the mitochondrial electron transport chain?
It transfers electrons from NADH to oxygen, pumping protons to generate ATP via oxidative phosphorylation.
How are reactive oxygen species (ROS) neutralized in cells?
Enzymes like superoxide dismutase, catalase, and glutathione peroxidase detoxify ROS to prevent cellular damage.
Why are globin proteins important for oxygen transport?
Globins like myoglobin and hemoglobin bind oxygen reversibly, facilitating oxygen storage and transport in tissues.
What is the structural difference between myoglobin and hemoglobin?
Myoglobin is a single polypeptide with one heme; hemoglobin is a tetramer with four subunits, each containing a heme.
Explain the cooperative oxygen binding of hemoglobin.
Hemoglobin's quaternary structure allows oxygen binding at one site to increase affinity at others, producing a sigmoid oxygen dissociation curve.
What is the Bohr effect in hemoglobin function?
Lower pH (higher H+ concentration) decreases hemoglobin's oxygen affinity, promoting oxygen release in tissues.
How does 2,3-bisphosphoglycerate (2,3-BPG) regulate hemoglobin?
2,3-BPG binds hemoglobin's T state, stabilizing it and decreasing oxygen affinity to facilitate oxygen release.
Why does fetal hemoglobin have higher oxygen affinity than adult hemoglobin?
Fetal hemoglobin binds 2,3-BPG less tightly, resulting in higher oxygen affinity to extract oxygen from maternal blood.
What causes sickle cell anemia at the molecular level?
A point mutation substituting valine for glutamate at position 6 in β-globin causes hemoglobin polymerization and red cell sickling.
How does hydroxyurea help treat sickle cell anemia?
Hydroxyurea increases fetal hemoglobin levels, which inhibits sickle hemoglobin polymerization and reduces symptoms.