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TRANSCRIPTION AND REVERSE TRANSCRIPTION OF RETROTRANSPOSONS

Annual Review of Microbiology, 1989
Replication des retrotransposons: article de synthese. Presentation des classes principales de retrotransposons. Transcription.
J D, Boeke, V G, Corces
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Expanding the reverse transcription toolbox

Nature Chemistry, 2020
Tailor-made reverse transcriptases are used in molecular biology and synthetic genetics. However, re-engineering these enzymes to work with non-natural nucleic acids is difficult and requires powerful directed evolution strategies. Now, an adaptable selection approach has been demonstrated for the evolution of new reverse transcriptases.
Melanie Henkel, Andreas Marx
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Reverse-engineering transcription control networks

Physics of Life Reviews, 2005
Microarray technologies, which enable the simultaneous measurement of all RNA transcripts in a cell, have spawned the development of algorithms for reverse-engineering transcription control networks. In this article, we classify the algorithms into two general strategies: physical modeling and influence modeling.
Timothy S, Gardner, Jeremiah J, Faith
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APOBEC3 proteins and reverse transcription

Virus Research, 2008
The ability of members of the APOBEC3 (A3) family of proteins to confer intrinsic immunity to retroviral infection was recognized in several studies. More specifically, A3 proteins are cytidine deaminases (CDAs) that cause hypermutations of nascent retroviral genomes by deamination of cytidine residues. Although A3 proteins can restrict the replication
Renato S, Aguiar, B Matija, Peterlin
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Retroviral Recombination and Reverse Transcription

Science, 1990
Recombination occurs at a high rate in retroviral replication, and its observation requires a virion containing two different RNA molecules (heterodimeric particles). Analysis of retroviral recombinants formed after a single round of replication revealed that (i) the nonselected markers changed more frequently than expected from the rate of ...
W S, Hu, H M, Temin
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Reverse transcription in CaMV

Trends in Biochemical Sciences, 1985
Abstract Cauliflower mosaic virus, although a DNA virus, uses RNA as a replicative intermediate and employs reverse transcriptase for genome replication. Details of this replication mode as currently known and implications for other aspects of the life cycle of this virus are presented here.
T. Hohn, B. Hohn, P. Pfeiffer
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Reverse transcription in genome evolution

Cytogenetic and Genome Research, 2005
As reverse transcription is predominantly performed by retrotransposable elements, the process is often entirely associated with the propagation of these elements. However, as a unique tool for transmitting information from the dynamic RNA to the more inert DNA, reverse transcription has been instrumental in shaping extant genomes.
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