Cell Membrane - The Dynamic Gatekeeper
- Structure & Composition: Fluid mosaic model. Phospholipid bilayer (amphipathic: polar heads, non-polar tails). Cholesterol: stability & fluidity. Proteins: integral (transmembrane; channels, carriers, receptors), peripheral. Glycocalyx (glycolipids/glycoproteins): cell recognition, protection, adhesion.
- Key Functions: Selective barrier controlling passage. Regulates nutrient uptake, waste excretion. Facilitates cell signaling (via receptors) and cell-cell interactions/adhesion. Establishes & maintains resting membrane potential (RMP), typically -70 mV to -90 mV.
- Transport Mechanisms:
⭐ The Na+/K+ ATPase is an electrogenic pump: 3 Na+ ions out & 2 K+ ions in per ATP. Vital for maintaining Na+/K+ gradients, RMP, cell volume, and driving secondary active transport. Consumes ~25% cellular ATP (up to 70% in neurons).
Cytoplasmic Organelles - Cellular Factories
| Organelle | Primary Function(s) | Key Feature / Mnemonic / Marker |
|---|---|---|
| Mitochondria | ATP synthesis ($ADP + P_i \rightarrow ATP$) | "Powerhouse", cristae, own DNA |
| Rough ER (RER) | Synthesis & modification of proteins for secretion/membranes | Ribosomes. 📌 RER: Ribosomes for Protein synthesis. |
| Smooth ER (SER) | Lipid synthesis, detoxification, Ca²⁺ storage | Lacks ribosomes, tubular |
| Golgi Apparatus | Protein/lipid modification, sorting, packaging | "Post office", cisternae, cis/trans faces |
| Lysosomes | Intracellular digestion, waste breakdown | "Suicidal bags", hydrolytic enzymes (e.g., acid phosphatase) |
| Peroxisomes | Fatty acid breakdown (β-oxidation), detoxification (e.g., $H_2O_2$ by catalase) | Contains catalase |
| Ribosomes | Protein synthesis | Free or RER-bound; rRNA + protein |
Nucleus & Cytoskeleton - Command & Scaffold
- Nucleus: Cell's command center; stores genetic blueprint (DNA).
- Nuclear Envelope: Double membrane with pores for regulated transport.
- Nucleolus: Ribosome (rRNA) synthesis.
- Chromatin: DNA + histone proteins; Euchromatin (active), Heterochromatin (condensed).
- Cytoskeleton: Internal scaffold for shape, movement, & transport. 📌 MIM:
- Microfilaments (Actin, ~7 nm): Cell cortex, motility, cleavage furrow.
- Intermediate Filaments (~8-12 nm): Mechanical strength (e.g., keratins, lamins).
- Microtubules (Tubulin, ~25 nm): Tracks for motor proteins (kinesin, dynein); cilia, flagella, mitotic spindle.
)
⭐ Drugs like Vincristine & Paclitaxel target microtubules, inhibiting cell division; crucial in cancer chemotherapy.
Cell Cycle & Signaling - Growth & Gossip
- Cell Cycle: Orderly sequence for cell duplication.
- Phases: G1 (growth), S (DNA synthesis), G2 (prep for mitosis), M (mitosis). 📌 "Go Sally Go, Make Children!"
- Mitosis Stages: PMAT (Prophase, Metaphase, Anaphase, Telophase).
- Checkpoints: Critical control at G1/S (restriction point) & G2/M (DNA integrity). Regulated by Cyclins & CDKs.

- Cell Signaling: Cells communicate via chemical signals (ligands).
- Ligand binds receptor → intracellular cascade → cellular response.
- Key Pathways & Second Messengers:
- Common second messengers: cAMP, cGMP, $Ca^{2+}$, IP3, DAG.
⭐ p53 ("guardian of the genome") is a crucial tumor suppressor, halting cell cycle at the G1/S checkpoint if DNA damage is detected, preventing proliferation of damaged cells. This is a frequent exam topic regarding cancer biology and cell cycle control.
High‑Yield Points - ⚡ Biggest Takeaways
- Plasma membrane: Fluid mosaic model; critical for selective permeability and cell integrity.
- Mitochondria: Powerhouse of the cell; primary site of ATP synthesis (oxidative phosphorylation).
- Rough ER: With ribosomes; essential for protein synthesis and initial modification.
- Smooth ER: Key for lipid synthesis, steroid production, and detoxification.
- Golgi apparatus: Modifies, sorts, and packages proteins and lipids for transport.
- Lysosomes: Contain hydrolytic enzymes for intracellular digestion; "suicidal bags".
- Nucleus: Houses DNA (genetic material); controls cell growth and reproduction.
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