21.3
지질불용성(lipid-insoluble; 즉, 수용성(water-soluble)) 호르몬(또는 리간드(ligand)로 알려진 수용체에 결합하는 분자)은 세포막을 가로질러 확산할 수 없습니다. 이 호르몬은 세포막에 있는 수용체(receptor)와 결합합니다. 첫 번째 전…
- [강사] 일부 호르몬이옥시토신처럼 지질에 용해되지 않으면세포막을 통해 확산될 수 없습니다대신, 세포 표면의 수용체와 결합해야 합니다결합시, 첫 메신저로 여겨지는 호르몬은신호 캐스케이드를 활성화합니다예를 들어, G 단백질 결합 수용체, 또는 GPCR은첫 메신저에 의한 활성화가세포막의 외부에서 일어나며, 효소의 내부에선포스포리파아제 C가인지질 PIP2를 IP3와 DAG로 가수 분해하는데이는 두 개의 다른 두 번째 메신저입니다일단 형성되면, IP3은 세포질에서내부 원형질 막으로 이동하고IP3 게이트 칼슘 채널과 결합 후에 칼슘 이온인세 번째, 두 번째 메신저가 세포질에 방출되고근육 수축과 같은 변화를 유도합니다이런 식으로, 호르몬은 세포에 영향을 줄 수 있으며심지어 침투하지 않고도 상당한세포 과정을 활성화하며, 이는 리간드와 수용체의존재 상태에 따라 달라집니다
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Q1: Why can't lipid-insoluble hormones cross the cell membrane directly?
Lipid-insoluble hormones are water-soluble molecules that cannot diffuse through the hydrophobic lipid bilayer of the cell membrane. Instead, these hormones bind to receptors on the cell surface, triggering a signaling cascade that produces cellular responses without the hormone entering the cell itself.
Q2: What happens when a first messenger binds to a G protein-coupled receptor?
When a hormone binds to a G protein-coupled receptor, the alpha subunit of the G protein dissociates from the receptor, activating an intracellular enzyme like phospholipase C. This enzyme hydrolyzes the membrane phospholipid PIP2 into IP3 and DAG, which are second messengers that trigger downstream cellular responses.
Q3: How do second messengers amplify hormonal signals inside the cell?
Second messengers like IP3 and calcium ions activate multiple proteins and pathways within the cell, amplifying the initial signal from a single hormone molecule. This multi-step process creates a cascade effect where each step depends on multiple reactions, verifying proper cellular activities occur and magnifying the response.
Q4: What are the three structural domains found in cell membrane receptors?
Cell membrane receptors contain an external ligand-binding domain that recognizes hormones, a transmembrane domain that spans the cell membrane, and an internal domain that initiates cellular responses. These three portions work together to translate extracellular signals into intracellular effects without requiring hormone entry.
Q5: How do ligand-gated ion channels differ from enzyme-linked receptors?
Ligand-gated ion channels undergo conformational changes when bound to a ligand, allowing ions to pass through a channel in the transmembrane region. Enzyme-linked receptors have an intracellular domain that is either associated with an enzyme or is an enzyme itself, directly activating other proteins when ligands bind.
Q6: What is signal transduction and why is it a multi-step process?
Signal transduction is the conversion of an extracellular stimulus into an intracellular response through multiple molecular interactions. Each step depends on other reactions, providing verification that proper cellular activities occur and allowing the response to be amplified before reaching the target outcome.
Q7: How can a hormone affect a cell without entering it?
Water-soluble hormones bind to cell surface receptors, triggering intracellular signaling cascades through second messengers like calcium ions. These messengers activate cellular processes such as muscle contraction depending on the ligands and receptors present, allowing hormones to produce effects without crossing the cell membrane. Understanding these mechanisms is central to the stress response and hypothalamic pituitary axis.