Skip to content

#light activation

2 public questions tagged with this topic.

DNA photolyase requires which light for activation?

DNA photolyase contains light-harvesting cofactors such as methenyltetrahydrofolate and flavin adenine dinucleotide in reduced FADH- form. Enzyme flips out thymine dimer into active pocket where FADH- absorbs photons in blue region 350-450 nanometer. Upon photon absorption, excited FADH- donates electron to dimer splitting cyclobutane ring via radical mechanism returning dimers to monomeric thymines and restoring FAD radical which recaptures electron completing catalytic cycle. Absorption maximum around 384 nanometer and blue light requirement distinguishes photolyase from UV-C which itself creates dimers, explaining why sunlight can both damage and provide substrate for repair.

Ref: Lodish et al., Molecular Cell Biology, 9th ed., Chapter 12: Photolyase Blue Light Activation Mechanism

Light activation converts 11-cis-retinal to

all-trans-retinal, 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)