• Receptor proteins have binding sites specific to signalling ligands
• Ligand binding starts signal transduction in target cells
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Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
2
Learning objective
C2.1.2 (HL)—Quorum sensing in bacteria
New
• Autoinducers allow bacteria to detect population density thresholds
• Vibrio fischeri bioluminescence and biofilm formation are key examples
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
3
Learning objective
C2.1.3 (HL)—Functional categories in animals
New
• Animal signals include hormones, neurotransmitters, cytokines, and Ca²⁺ ions
• They differ in source, distance, speed, and target-cell response
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
4
Learning objective
C2.1.4 (HL)—Chemical diversity
New
• Hormones include protein/peptide, steroid, and amine classes
• Neurotransmitters include acetylcholine, amino acids, peptides, amines, and nitric oxide
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
5
Learning objective
C2.1.5 (HL)—Localized vs. distant effects
New
• Neurotransmitters act locally across narrow synaptic clefts
• Hormones travel through blood to distant cells with matching receptors
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
6
Learning objective
C2.1.6 (HL)—Transmembrane vs. intracellular receptors
New
• Hydrophilic ligands bind transmembrane receptors and use intracellular relays
• Steroid and thyroid hormones cross membranes and bind cytoplasmic or nuclear receptors
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
7
Learning objective
C2.1.7 (HL)—Signal transduction pathways
New
• Signal transduction relays, amplifies, integrates, and distributes ligand signals
• Pathways use relay proteins, second messengers, phosphorylation cascades, and effectors
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
8
Learning objective
C2.1.8 (HL)—Neurotransmitter receptors and membrane potential
New
• Acetylcholine can bind ligand-gated sodium channels
• Sodium influx changes membrane potential and can depolarize the postsynaptic membrane
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
9
Learning objective
C2.1.9 (HL)—G protein-coupled receptors
New
• GPCRs are seven-helix transmembrane receptors linked to G proteins
• Ligand binding causes GDP-GTP exchange and activation of effector proteins
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
10
Learning objective
C2.1.10 (HL)—Epinephrine (adrenaline) mechanism
New
• Epinephrine binds adrenergic GPCRs and activates G protein signalling
• Adenylyl cyclase forms cAMP, activating kinase cascades for glycogen breakdown
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
11
Learning objective
C2.1.11 (HL)—Tyrosine kinase receptors
New
• RTK ligand binding causes dimerisation and autophosphorylation
• Insulin signalling moves GLUT4 vesicles to membranes and promotes glycogenesis
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
12
Learning objective
C2.1.12 (HL)—Intracellular receptors
New
• Steroid and thyroid hormones bind intracellular receptor proteins
• Hormone-receptor complexes enter or act in the nucleus as transcription factors
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
13
Learning objective
C2.1.13 (HL)—Effects of oestradiol and progesterone
New
• Oestradiol regulates female sex characteristics and hypothalamus-pituitary targets
• Progesterone from corpus luteum or placenta maintains endometrium and pregnancy
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.
14
Learning objective
C2.1.14 (HL)—Regulation by feedback
New
• Positive feedback amplifies responses, such as ethylene in fruit ripening
• Negative feedback restores stability, such as insulin lowering blood glucose
0%
Mastery
0
Attempts
0
Mistakes
Start with the concept explanation, then practise to create mastery evidence.