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December 16, 2004Journal of General Virology125 citations

Recovery of APOBEC3-edited human immunodeficiency virus G→A hypermutants by differential DNA denaturation PCR

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RSRodolphe SuspèneMHMichel HenrySGSophie Guillot

Key Result

Differential DNA denaturation PCR using a temperature 1-3 degrees C lower than standard allowed selective amplification of AT-rich HIV-1 G-->A hypermutants and poliovirus variants.

Structured PICO

P
Population
Viral sequences (human immunodeficiency virus type 1 and poliovirus mutants) differing in AT content
I
Intervention
Differential DNA denaturation PCR using a denaturation temperature 1-3 degrees C lower than the lowest denaturation temperature (Tp) that allowed amplification of the parental sequence
C
Comparator
PCR at the lowest denaturation temperature (Tp) that allowed amplification of the parental sequence
O
Outcome
Selective amplification and identification of AT-rich viral variants (HIV-1 G->A hypermutants and poliovirus mutants)

Differential DNA denaturation PCR is a sensitive method for selectively amplifying AT-rich viral variants, such as HIV-1 G->A hypermutants.

Abstract

Virus genomes from the same family may exhibit a wide range in their DNA GC content, whereas viral hypermutants differ substantially in GC content from their parental genomes. As AT-rich DNA melts at lower temperatures than GC-rich DNA, use of a lower denaturation temperature during PCR should allow differential amplification of AT-rich genomes or variants within a quasispecies. The latter situation has been explored explicitly in a two-step process by using a series of well-defined viral sequences differing in their AT content. Firstly, the lowest denaturation temperature (T(p)) that allowed amplification of the parental sequence was determined. Secondly, differential amplification of AT-rich viral variants was obtained by using a denaturation temperature 1-3 degrees C lower than T(p). Application of this sensitive method to two different viruses allowed us to identify human immunodeficiency virus type 1 G-->A hypermutants in a situation where none were expected and to amplify AT-rich variants selectively within a spectrum of poliovirus mutants.

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Cite This Study

Suspène et al. (2004) studied Human immunodeficiency virus type 1 and poliovirus. Differential DNA denaturation PCR vs. Standard PCR (denaturation temperature for parental sequence) was evaluated on Differential amplification of AT-rich viral variants. Differential DNA denaturation PCR using a temperature 1-3 degrees C lower than standard allowed selective amplification of AT-rich HIV-1 G-->A hypermutants and poliovirus variants.

synapsesocial.com/papers/6a9da920894d4c85b98b2055https://doi.org/10.1099/vir.0.80426-0
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