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Fasteris Life
sirna deep sequencing Sirna Deep Sequencing, supplied by Fasteris Life, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/sirna+deep+sequencing/sirna+deep+sequencing/10__1016_slash_j__pmpp__2024__102219-69-17-11 Average 90 stars, based on 1 article reviews
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Illumina Inc
deep sequence analysis of asymmetric tnpo3 27-mer dicer-substrate sirnas Deep Sequence Analysis Of Asymmetric Tnpo3 27 Mer Dicer Substrate Sirnas, supplied by Illumina Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/sirna+deep+sequencing/deep+sequence+analysis+of+asymmetric+tnpo3+27+mer+dicer+substrate+sirnas/pmc03384246-260-0-0 Average 90 stars, based on 1 article reviews
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Illumina Inc
deep sequence analysis of asymmetric tnpo3 27-mer dicer-substrate sirnas (group ii) Deep Sequence Analysis Of Asymmetric Tnpo3 27 Mer Dicer Substrate Sirnas (Group Ii), supplied by Illumina Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/sirna+deep+sequencing/deep+sequence+analysis+of+asymmetric+tnpo3+27+mer+dicer+substrate+sirnas/pmc03384246-258-0-0 Average 90 stars, based on 1 article reviews
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Journal: Molecular therapy. Nucleic acids
Article Title: Deep Sequencing Analyses of DsiRNAs Reveal the Influence of 3′ Terminal Overhangs on Dicing Polarity, Strand Selectivity, and RNA Editing of siRNAs
doi: 10.1038/mtna.2012.6
Figure Lengend Snippet: Illumina Deep sequence analyses and IC 50 values of asymmetric 27-mer TNPO3 Dicer-substrate siRNAs (group II)
Article Snippet:
Techniques: Sequencing
Journal: Molecular therapy. Nucleic acids
Article Title: Deep Sequencing Analyses of DsiRNAs Reveal the Influence of 3′ Terminal Overhangs on Dicing Polarity, Strand Selectivity, and RNA Editing of siRNAs
doi: 10.1038/mtna.2012.6
Figure Lengend Snippet: Illumina Deep sequence analyses of asymmetric 27-mer Homo sapiens transportin 3 ( TNPO3 ) Dicer-substrate siRNAs (group II). HEK 293 cells were transfected with 10 nmol/l of the asymmetric group II RNA duplexes. Forty hours post-transfection the total RNAs were isolated and prepared for Illumina Deep sequencing. The data collection and alignment are described in Materials and Methods section. ( a ) The total reads and abundance of sense and antisense strands from each duplex. ( b ) The strand distribution was calculated as the ratio of the abundance of antisense to sense. The ratio of antisense (AS) to sense (S) is ranked by the 3′ overhang GG > GC, AA > CC, UU ≫ tt. ( c ) The dicing pattern L-R and R-L are as previously described. The L-R pattern generates the desired siRNA species for target knockdown. Total reads from the top 10 antisense strands and the abundance of L-R cleavage products from the antisense strand. ( d ) Two types of RNA editing: trimming of the 3′ end and post-transcriptional addition of nucleotides at the 3′ or 5′ ends.
Article Snippet:
Techniques: Sequencing, Transfection, Isolation, Knockdown
Journal: Molecular therapy. Nucleic acids
Article Title: Deep Sequencing Analyses of DsiRNAs Reveal the Influence of 3′ Terminal Overhangs on Dicing Polarity, Strand Selectivity, and RNA Editing of siRNAs
doi: 10.1038/mtna.2012.6
Figure Lengend Snippet: Illumina Deep sequence analyses of asymmetric 27-mer heterogeneous nuclear ribonucleoprotein H ( hnRNP H1 ) Dicer-substrate small interfering RNA (siRNAs). The data collection and alignment were as described above. ( a ) Total reads of the top 10 sense and antisense strands from each duplex. ( b ) The strand distribution was calculated as the ratio of the abundance of antisense to sense. Ratio of antisense (AS) to sense (S) is ranked by the 3′ overhang GG > AA in site 324 Dicer-substrate small interfering RNAs (DsiRNAs) and GG > CC in site 325 DsiRNAs. ( c ) The dicing pattern L-R and R-L are as previously described. The L-R model generates the desired siRNA species for target knockdown. The total reads of the top 10 antisense strands and the abundance of L-R cleavage products are presented.
Article Snippet:
Techniques: Sequencing, Small Interfering RNA, Knockdown
Journal: Molecular therapy. Nucleic acids
Article Title: Deep Sequencing Analyses of DsiRNAs Reveal the Influence of 3′ Terminal Overhangs on Dicing Polarity, Strand Selectivity, and RNA Editing of siRNAs
doi: 10.1038/mtna.2012.6
Figure Lengend Snippet: Illumina Deep sequence analyses and IC 50 values of asymmetric 27-mer TNPO3 Dicer-substrate siRNAs (group II)
Article Snippet:
Techniques: Sequencing
Journal: Molecular therapy. Nucleic acids
Article Title: Deep Sequencing Analyses of DsiRNAs Reveal the Influence of 3′ Terminal Overhangs on Dicing Polarity, Strand Selectivity, and RNA Editing of siRNAs
doi: 10.1038/mtna.2012.6
Figure Lengend Snippet: Illumina Deep sequence analyses of asymmetric 27-mer Homo sapiens transportin 3 ( TNPO3 ) Dicer-substrate siRNAs (group II). HEK 293 cells were transfected with 10 nmol/l of the asymmetric group II RNA duplexes. Forty hours post-transfection the total RNAs were isolated and prepared for Illumina Deep sequencing. The data collection and alignment are described in Materials and Methods section. ( a ) The total reads and abundance of sense and antisense strands from each duplex. ( b ) The strand distribution was calculated as the ratio of the abundance of antisense to sense. The ratio of antisense (AS) to sense (S) is ranked by the 3′ overhang GG > GC, AA > CC, UU ≫ tt. ( c ) The dicing pattern L-R and R-L are as previously described. The L-R pattern generates the desired siRNA species for target knockdown. Total reads from the top 10 antisense strands and the abundance of L-R cleavage products from the antisense strand. ( d ) Two types of RNA editing: trimming of the 3′ end and post-transcriptional addition of nucleotides at the 3′ or 5′ ends.
Article Snippet:
Techniques: Sequencing, Transfection, Isolation, Knockdown
Journal: Molecular therapy. Nucleic acids
Article Title: Deep Sequencing Analyses of DsiRNAs Reveal the Influence of 3′ Terminal Overhangs on Dicing Polarity, Strand Selectivity, and RNA Editing of siRNAs
doi: 10.1038/mtna.2012.6
Figure Lengend Snippet: Illumina Deep sequence analyses of asymmetric 27-mer heterogeneous nuclear ribonucleoprotein H ( hnRNP H1 ) Dicer-substrate small interfering RNA (siRNAs). The data collection and alignment were as described above. ( a ) Total reads of the top 10 sense and antisense strands from each duplex. ( b ) The strand distribution was calculated as the ratio of the abundance of antisense to sense. Ratio of antisense (AS) to sense (S) is ranked by the 3′ overhang GG > AA in site 324 Dicer-substrate small interfering RNAs (DsiRNAs) and GG > CC in site 325 DsiRNAs. ( c ) The dicing pattern L-R and R-L are as previously described. The L-R model generates the desired siRNA species for target knockdown. The total reads of the top 10 antisense strands and the abundance of L-R cleavage products are presented.
Article Snippet:
Techniques: Sequencing, Small Interfering RNA, Knockdown