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RNase H sequence preferences influence antisense oligonucleotide efficiency
Łukasz J. Kiełpiński, Peter H. Hagedorn, Morten Lindow,
Jeppe Vinther
Bioinformatik og RNA Biologi
20
Citationer (Scopus)
44
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Alfabetisk
Immunology and Microbiology
Antisense
100%
DNA RNA Hybridization
66%
Enzyme Active Site
33%
Escherichia coli
66%
Human immunodeficiency virus
66%
Human Immunodeficiency Virus 1
100%
RNA Cleavage
33%
Transfer RNA
33%
Viral Replication
66%
Virus
33%
Virus Genome
33%
Biochemistry, Genetics and Molecular Biology
Antisense
100%
DNA RNA Hybridization
25%
Enzyme
12%
Enzyme Active Site
12%
Escherichia coli
25%
Human immunodeficiency virus
25%
Human Immunodeficiency Virus 1
37%
Oligonucleotide
100%
RNA
12%
RNA Cleavage
12%
RNase H
100%
Transfer RNA
12%
Virus Genome
12%
Virus Replication
25%
Keyphrases
HIV-1 RNase H
33%
Human RNases
16%
Multiple Virus
16%