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#aquaporins

4 public questions tagged with this topic.

Which of the following molecules moves most efficiently through aquaporins?

Aquaporins represent a family of tetrameric channel proteins mediating extremely rapid yet selective water transport essential for osmoregulation, kidney concentration and brain water balance. Each monomer contains six transmembrane helices plus two half helices HB and HE each bearing conserved Asn-Pro-Ala motif that meet centrally forming dipoles. Water moves single file through an hourglass pore constricted to 2.8 angstrom at aromatic arginine filter where histidine, arginine and phenylalanine side chains create size barrier. Permeation rate exceeds one billion molecules per second per monomer driven purely by osmotic gradient without conformational change or ATP hydrolysis. Selectivity depends on three principles: size exclusion prevents hydrated ions and glucose, electrostatic repulsion by arginine carbonyl orientation blocks proton hopping via Grotthuss mechanism by breaking water wire, and precise hydrogen bonding via NPA asparagines forces water reorientation. Sodium ions retain large hydration shell and would require energetic dehydration, while glucose exceeds pore diameter. Some aquaglyceroporins conduct glycerol or ammonia inefficiently, but orthodox water channels show thousand fold preference for water, ensuring efficient osmotic equilibration.

Ref: Agre et al., Nobel Lecture 2003, Aquaporin Water Channels Structure - NPA Motifs and Proton Exclusion.

What is the primary function of aquaporins?

Water homeostasis requires rapid equilibration across membranes due to filtration secretion challenges. Simple diffusion through lipid bilayer measurable permeability ten to minus three cm per second insufficient for tissues requiring high flux such as kidney proximal tubule collecting duct reabsorbing one eighty liters per day erythrocytes facing shear retinal epithelium astrocytes buffering potassium via swelling. Aquaporins form family of integral channels forming homotetramers where each monomer twenty eight kilodaltons six transmembrane helices two half helices conserved NPA motifs create constriction allowing single-file water movement up to billion molecules per monomer per second while excluding protons via arginine at ar/R site preserving electrochemical gradients preventing acidification. Transport passive bidirectional following osmotic gradient without ATP hydrolysis or large conformational change like carriers driven by chemical potential. Regulation principally via trafficking vasopressin V2 receptor raising cAMP protein kinase A phosphorylating AQP2 at Ser256 triggering insertion into apical membrane of principal cells increasing reabsorption concentrating urine or gating via loop D phosphorylation pH calcium. Mammals express thirteen isoforms AQP0-12 some aquaglyceroporins AQP3,7,9,10 permeable to glycerol urea. Dysfunction causes nephrogenic diabetes insipidus when water reabsorption fails leading to polyuria.

Ref: Agre, Nobel Lecture 2003: Aquaporins – Water Channel Discovery and Function.

Aquaporins are involved in:

The right choice is C: Facilitated water transport. In WATER TRANSPORT, that matches how the process or concept actually works — the other choices mix up related ideas or use the wrong mechanism. Skip these: A) Ion transport; B) Sugar transport; D) Active pumping. A quick check: if an option needs energy, pumps, or the opposite direction of movement, ask whether that really applies.

Ref: Best CSIR NET Plant Physiology books: Master Unit 6 with Taiz & Zeiger and Salisbury & Ross. Crack Part C experimental questions with top textbooks.