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#false statements

14 public questions tagged with this topic.

Which of the following statements about membrane proteins is FALSE?

Fluid mosaic model postulates membrane proteins diffuse laterally, associate with cytoskeleton, function as enzymes receptors carriers and structural anchors. Transverse movement of proteins between leaflets termed flip-flop faces enormous energetic barrier because large hydrophilic extramembranous domains containing charged residues lysine arginine aspartate glutamate would need dehydration and passage through hydrocarbon core twenty to thirty angstroms low dielectric constant incurring free energy tens kilocalories plus disruption of established orientation determined during biogenesis at Sec61 translocon following signal anchor and positive-inside rule where cytosolic Lys Arg enriched. Experimental tracking using fluorescent labeled Band 3 or glycophorin in erythrocytes shows no spontaneous flipping over days; turnover occurs via endocytosis lysosomal degradation and recycling rather than flipping. Phospholipid flip-flop catalyzed by flippases floppases scramblases half-life minutes hours regulated. Therefore assertion that membrane proteins can flip between leaflets without assistance is false highlighting conservation of topology and asymmetry essential for vectorial transport and signaling orientation preserved throughout lifetime.

Ref: Alberts et al., Molecular Biology of the Cell, 6th ed., Chapter 10, Membrane Protein Topology and Asymmetry.

Which of the following statements about ionophores is false?

Ionophores are small hydrophobic organic molecules, typically cyclic peptides, depsipeptides or polyethers, produced by various soil microbes as competitors for niche colonization. Their defining functional attribute is capacity to overcome the high dielectric barrier of lipid bilayers for charged ions by providing a polar binding site shielded by hydrophobic exterior that readily partitions into membrane. By facilitating passive equilibration of ions down existing electrochemical gradients, they dissipate membrane potential, pH gradients and ion asymmetries, uncoupling oxidative phosphorylation, disrupting calcium signaling and inhibiting growth. Examples include valinomycin carrying potassium, A23187 carrying calcium, monensin mediating sodium proton exchange. Mechanistically they function either as mobile carriers binding and diffusing or as channel formers creating pores, but both processes are driven solely by concentration and electrical gradients, following Fick and Nernst principles. No direct ATP hydrolysis, phosphorylation intermediate or nucleotide binding domain participates. Primary active pumps such as Na+/K+ ATPase and ABC transporters do consume ATP. Therefore describing ionophores as ATP-driven pumps contradicts fundamental energetics and mechanism of passive facilitated equilibration.

Ref: Alberts et al., Molecular Biology of the Cell, 7th ed., Chapter 11: Ionophores as Mobile Carriers and Channel Formers.

Which is NOT true about evolution?

Is goal-oriented reflects key principle in quiz on section a solved pyqs, where evolutionary mechanisms shape genetic variation and adaptation. In this context, Is goal-oriented aligns with experimental and theoretical evidence from population genetics, behavioral ecology and molecular phylogeny. Textbooks like Campbell Biology, Futuyma Evolution and Hartl Principles illustrate supporting data. Understanding why Is goal-oriented fits helps integrate natural selection, environment.

Ref: Campbell Biology, Evolution Chapters, Selection Types.