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#microarray analysis

2 public questions tagged with this topic.

In protein microarray, high-throughput detection is possible by:

Protein microarray technology enables high-throughput functional analysis by immobilizing thousands of purified proteins or peptides at discrete spots on functionalized glass slide using contact or inkjet printing. Simultaneous printing preserves orientation and activity, allowing parallel interrogation against labeled query such as protein, antibody, drug, or small molecule in one experiment. Binding events are detected via fluorescence scanners after washing. Antibody-antigen reaction alone is too narrow, gene amplification does not apply to proteins, and SDS-PAGE is low throughput. Multiplexed printing underlies proteome-wide interaction and biomarker screening with minimal sample.

Ref: NCERT Biology Class XII Principles on Klenow fill-in labeling, Lehninger Chapter 9 DNA cloning techniques, and Molecular Cloning by Sambrook Chapter 10 documenting end-labeling of cohesive termini.

Yellow spots in DNA microarray represent genes that are

Equally expressed in both samples, 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)