2015 pbluescript ii sk genscript px459 v2 0 addgene (Addgene inc)
96
Structured Review
Addgene inc
2015 pbluescript ii sk genscript px459 v2 0 addgene
2015 Pbluescript Ii Sk Genscript Px459 V2 0 Addgene, supplied by Addgene inc, used in various techniques. Bioz Stars score: 96/100, based on 1285 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/2015+pbluescript+ii+sk+genscript+px459+v2+0+addgene/pSpCas9(BB)-2A-Puro+(PX459)+(Plasmid+%2348139)/pm39748120-245-97-104
Average 96 stars, based on 1285 article reviews
2015 Pbluescript Ii Sk Genscript Px459 V2 0 Addgene, supplied by Addgene inc, used in various techniques. Bioz Stars score: 96/100, based on 1285 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/2015+pbluescript+ii+sk+genscript+px459+v2+0+addgene/pSpCas9(BB)-2A-Puro+(PX459)+(Plasmid+%2348139)/pm39748120-245-97-104
Average 96 stars, based on 1285 article reviews
2015 pbluescript ii sk genscript px459 v2 0 addgene - by Bioz Stars,
2026-09
96/100 stars
Images
Related Articles
Recombinant:Article Title: MCTS2 and distinct eIF2D roles in uORF-dependent translation regulation revealed by in vitro re-initiation assays. Article Snippet: Ribosomes scanning from the mRNA 5′ cap to the start codon may initiate at upstream open reading frames (uORFs), decreasing protein biosynthesis.. Termination at a uORF can lead to re-initiation, where 40S subunits resume scanning and initiate another translation event downstream.. The noncanonical translation factors MCTS1-DENR participate in re-initiation at specific uORFs, but knowledge of other trans-acting factors or uORF features influencing re-initiation is limited. Plasmid Preparation:Article Title: MCTS2 and distinct eIF2D roles in uORF-dependent translation regulation revealed by in vitro re-initiation assays. Article Snippet: Ribosomes scanning from the mRNA 5′ cap to the start codon may initiate at upstream open reading frames (uORFs), decreasing protein biosynthesis.. Termination at a uORF can lead to re-initiation, where 40S subunits resume scanning and initiate another translation event downstream.. The noncanonical translation factors MCTS1-DENR participate in re-initiation at specific uORFs, but knowledge of other trans-acting factors or uORF features influencing re-initiation is limited. Luciferase:Article Title: MCTS2 and distinct eIF2D roles in uORF-dependent translation regulation revealed by in vitro re-initiation assays. Article Snippet: Ribosomes scanning from the mRNA 5′ cap to the start codon may initiate at upstream open reading frames (uORFs), decreasing protein biosynthesis.. Termination at a uORF can lead to re-initiation, where 40S subunits resume scanning and initiate another translation event downstream.. The noncanonical translation factors MCTS1-DENR participate in re-initiation at specific uORFs, but knowledge of other trans-acting factors or uORF features influencing re-initiation is limited. Control:Article Title: MCTS2 and distinct eIF2D roles in uORF-dependent translation regulation revealed by in vitro re-initiation assays. Article Snippet: Ribosomes scanning from the mRNA 5′ cap to the start codon may initiate at upstream open reading frames (uORFs), decreasing protein biosynthesis.. Termination at a uORF can lead to re-initiation, where 40S subunits resume scanning and initiate another translation event downstream.. The noncanonical translation factors MCTS1-DENR participate in re-initiation at specific uORFs, but knowledge of other trans-acting factors or uORF features influencing re-initiation is limited. Expressing:Article Title: MCTS2 and distinct eIF2D roles in uORF-dependent translation regulation revealed by in vitro re-initiation assays. Article Snippet: Ribosomes scanning from the mRNA 5′ cap to the start codon may initiate at upstream open reading frames (uORFs), decreasing protein biosynthesis.. Termination at a uORF can lead to re-initiation, where 40S subunits resume scanning and initiate another translation event downstream.. The noncanonical translation factors MCTS1-DENR participate in re-initiation at specific uORFs, but knowledge of other trans-acting factors or uORF features influencing re-initiation is limited. shRNA:Article Title: MCTS2 and distinct eIF2D roles in uORF-dependent translation regulation revealed by in vitro re-initiation assays. Article Snippet: Ribosomes scanning from the mRNA 5′ cap to the start codon may initiate at upstream open reading frames (uORFs), decreasing protein biosynthesis.. Termination at a uORF can lead to re-initiation, where 40S subunits resume scanning and initiate another translation event downstream.. The noncanonical translation factors MCTS1-DENR participate in re-initiation at specific uORFs, but knowledge of other trans-acting factors or uORF features influencing re-initiation is limited. |