Selected article for: "Nucleic acid and probe hybridization"

Author: Jabado, Omar J.; Liu, Yang; Conlan, Sean; Quan, P. Lan; Hegyi, Hédi; Lussier, Yves; Briese, Thomas; Palacios, Gustavo; Lipkin, W. I.
Title: Comprehensive viral oligonucleotide probe design using conserved protein regions
  • Document date: 2007_12_13
  • ID: xfzhn1n1_30
    Snippet: Probe sequence composition is a major determinant of hybridization signal and is responsible for much of the variance between probes that target the same nucleic acid strand. Probe-target thermodynamics have been successfully modeled to predict fluorescence (41, 42) , control for variance (43) and even estimate concentrations of target detected in samples (44) . Observing that some probes with more than five mismatches to their targets showed str.....
    Document: Probe sequence composition is a major determinant of hybridization signal and is responsible for much of the variance between probes that target the same nucleic acid strand. Probe-target thermodynamics have been successfully modeled to predict fluorescence (41, 42) , control for variance (43) and even estimate concentrations of target detected in samples (44) . Observing that some probes with more than five mismatches to their targets showed strong fluorescent signal, we concluded that sequence composition is a major factor in our array platform.

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