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#protein functions

5 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 is not a function of lipid-linked proteins?

Functional spectrum of lipid-linked proteins encompasses dynamic localization and signal integration far beyond simple tethering. N-myristoylated and palmitoylated kinases like Src family and non-receptor tyrosine kinases concentrate at inner leaflet raft domains upon growth factor stimulation scaffolding MAPK, PI3K pathways regulating proliferation and cytoskeletal remodeling. Small GTPases Ras Rab and Arf require prenylation plus secondary palmitoylation for vesicular transport from endoplasmic reticulum through Golgi to plasma membrane controlling vesicle budding and fusion. GPI anchors of hydrolytic enzymes ecto-5 prime nucleotidase and alkaline phosphatase provide apical sorting in polarized epithelia, high mobility for substrate encounter, and release by phospholipase for soluble enzyme generation. Structural roles include linking extracellular matrix. Passive diffusion across bilayers however occurs through solubility of small nonpolar molecules like O2 CO2 or via aqueous channels porins aquaporins and carriers exchanging down gradient driven by concentration. Lipid anchors do not generate aqueous pores therefore cannot mediate passive diffusion requiring channel proteins with selectivity filters.

Ref: Bhatnagar and Gordon, Understanding Protein Lipidation, J Cell Biol Reviews.

Correct ECM protein matching: (June 2017)

A-iii, B-ii, C-iv, D-i, is consistent with established principles of cell signaling, receptor pharmacology and cellular regulation. Experimental measurements of binding parameters, genetic loss-of-function studies and pharmacological interventions all converge on the same interpretation. Related options address neighboring concepts but do not satisfy the precise criterion stated in the question.

Ref: NCERT Biology Class 11–12 Alberts et al Molecular Biology of the Cell Lodish et al, Molecular Cell Biology Cooper & Hausman, The Cell Abbas et al., Cellular and Molecular Immunology (for immunology sections)

Correct matching of adhesion protein families and functions: (Dec 2016)

A-iv, B-iii, C-ii, D-i, is consistent with established principles of cell signaling, receptor pharmacology and cellular regulation. Experimental measurements of binding parameters, genetic loss-of-function studies and pharmacological interventions all converge on the same interpretation. Related options address neighboring concepts but do not satisfy the precise criterion stated in the question.

Ref: NCERT Biology Class 11–12 Alberts et al Molecular Biology of the Cell Lodish et al, Molecular Cell Biology Cooper & Hausman, The Cell Abbas et al., Cellular and Molecular Immunology (for immunology sections)

Which protein provides structural integrity to skin, tendons, and bones?

Collagen is the scientifically accurate answer to this question. Within the study of Protein, this concept is well-established through extensive research and is documented in standard scientific literature. The specific properties, mechanisms, or characteristics of Collagen directly address what is being asked. Among the other options, Elastin, Keratin, and Fibrillin do not correctly answer this question because they either refer to different concepts, describe properties of other molecules or processes, or represent common misconceptions about this topic.

Ref: Lehninger Principles of Biochemistry, Nelson & Cox, 8th Ed., Ch. 4