Principles of <i>in vitro</i> selection of ribozymes from random sequence libraries. [PDF]
Higgs PG, Muller UF.
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Efficient genome editing by CRISPR-Cas12a in common wheat via shoot apical meristem delivery. [PDF]
Luo W +6 more
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Conditional guide RNA deactivation by mRNA and small molecule triggers in Saccharomyces cerevisiae. [PDF]
Xi C +4 more
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Expression of the <i>Nicotiana benthamiana</i> Retrozyme 1 (NbRZ1) Genomic Locus. [PDF]
Lezzhov AA +4 more
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Effects of lipid membranes on RNA catalytic activity and stability. [PDF]
Czerniak T, Saenz JP.
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Exonuclease-fused CRISPR-cas system enhances targeted genome editing for functional genomics in soybean. [PDF]
Devkar V +3 more
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Double-strand break-free and transgene-free genome editing in the microalga Nannochloropsis oceanica using removable vectors containing the CRISPR base editing system. [PDF]
Moroi K, Yamamoto T, Kurita T.
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Plasmid-Based Reverse Genetics System Enabling One-Step Generation of Genotype 3 Hepatitis E Virus. [PDF]
Kobayashi T +4 more
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Related searches:
Highly active low magnesium hammerhead ribozyme.
The Journal of Biochemistry, 2009Hammerhead (HH) ribozymes can be used for highly specific inhibition of gene expression through the degradation of target mRNA. In vitro experiments with minimal HH domains demonstrated that the efficiency of catalysis is highly dependent on concentration of magnesium ions. Optimal ion requirements for HH-catalysed RNA cleavage are far from these found
Agnieszka Fedoruk-Wyszomirska +4 more
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Hammerhead ribozyme engineering
Current Opinion in Structural Biology, 1996Of all the catalytic RNAs the hammerhead ribozyme is the most chemically modified and structurally studied. Such studies have resulted in improvements in the nuclease resistance of ribozymes, reductions in their size, and improvements in their catalytic efficiency.
N, Usman, L, Beigelman, J A, McSwiggen
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