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1 re mobile retroelements that move through an RNA intermediate.
2 ify in a "copy-and-paste" fashion through an RNA intermediate.
3 GDP generated from GTP via a covalent enzyme-RNA intermediate.
4 gy of replication involves a double-stranded RNA intermediate.
5 eukaryotic genomes that mobilize through an RNA intermediate.
6 ranscriptase (RT) and replicate by way of an RNA intermediate.
7 involves the formation of a covalent enzyme-RNA intermediate.
8 are mobile genetic elements that move via an RNA intermediate.
9 tous human transposons that replicate via an RNA intermediate.
10 anticipated to stabilize the covalent enzyme-RNA intermediate.
11 are human transposons which replicate via an RNA intermediate.
12 ons replicate by reverse transcription of an RNA intermediate.
13 ranspose through reverse transcription of an RNA intermediate.
14 LINEs, are retrotransposons that move via an RNA intermediate.
15 ate their DNA by reverse transcription of an RNA intermediate.
16 s, that move via reverse transcription of an RNA intermediate.
17 ents and move by reverse transcription of an RNA intermediate.
18 ted by retrotransposition, which involves an RNA intermediate.
19 ral DNA genome proceeds through a pregenomic RNA intermediate.
20 at transpose via reverse transcription of an RNA intermediate.
21 otransposons; that is, they transpose via an RNA intermediate.
22 novo initiation and involves a complementary RNA intermediate.
23 of branched RNAs that mimic intronic lariat RNA intermediates.
24 L1 elements propagate through RNA intermediates.
25 ing dominated by retroelements that move via RNA intermediates.
26 capable of generating new insertions through RNA intermediates.
27 at amplify through a copy-and-paste mode via RNA intermediates.
28 OX24, is also involved in processing of COX1 RNA intermediates.
32 epeats in the mammalian genome, moves via an RNA intermediate and encodes its own reverse transcripta
34 amate (KGlu) routinely enhances the yield of RNA intermediates and products obtained from in vitro sp
36 pTRS1 binding to PKR was not mediated by an RNA intermediate, and mutations in the pTRS1 RNA binding
37 tes into the human somatic genome through an RNA intermediate, and that such integrations are detecte
38 s virus infection, a virus whose replicative RNA intermediates are recognized specifically by RIG-I r
39 sable elements that are processed through an RNA intermediate, are categorized as short interspersed
41 TR retrotransposons that mobilize through an RNA intermediate by target site primed reverse transcrip
42 isting of transcription of oligomeric viroid RNA intermediates, cleavage to unit-length strands, and
46 e place via the synthesis of negative-strand RNA intermediates from a positive-strand genomic templat
47 genes by RNA polymerase II yields messenger RNA intermediates from which protein products are synthe
48 f the SDR elements, probably working through RNA intermediates, have been mobile in recent evolutiona
49 ange of taxa, genes can duplicate through an RNA intermediate in a process mediated by retrotransposo
51 Specifically, the formation of stable RapA-RNA intermediates in transcription and other, independen
52 de their cognate intron-minus alleles via an RNA intermediate, in a process known as retrohoming.
53 unit of Gag, while others have found that an RNA intermediate is required for Gag-APOBEC3G interactio
54 interfering RNAs, the 21-nt double-stranded RNA intermediates of this natural pathway, have became a
56 unique DNA virus that replicates through an RNA intermediate produced from a stable covalently close
57 on their mehcanism of transposition: via an RNA intermediate (retroelements) or via a DNA intermedia
58 events requiring reverse transcription of an RNA intermediate, RNA-primed minus- and plus-strand DNA
61 bunit Rrp6 allows visualization of noncoding RNA intermediates that are terminated but not yet proces
62 lular:viral RNA hybrids, which are essential RNA intermediates that license transcription of antisens
63 DNA genome and replicate this DNA through an RNA intermediate (the pregenomic RNA, pgRNA) by reverse
65 translation from the CaMV 35S polycistronic RNA intermediate, the precise role of these bodies in th
66 a critical step of trimming piwi-interacting RNA intermediates to achieve optimally sized piwi-intera
67 transposition competent and mobilize through RNA intermediates to different locations within the geno
68 n active mammalian retrotransposon that uses RNA intermediates to populate new sites throughout the g
69 These elements move autonomously through an RNA intermediate using target-primed reverse transcripti
70 examine the precise structure of this primer RNA intermediate, we have used two methods to reconstitu
71 s accumulation of untrimmed piwi-interacting RNA intermediates with 3' end extension, leading to seve
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