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Displaying 20 of 90 results for "RNASEH1"
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  1. Hybrid-binding domain of human RNase H1 in complex with 12-mer RNA/DNA PDB

    ID: PDB:3BSU

    Description: Ribonuclease H1 (E.C.3.1.26.4)/RNA/DNA

  2. Structure of LC11-RNase H1 Isolated from Compost by Metagenomic Approach: Insight into the Structural Bases for Unusual Enzymatic ... PDB

    ID: PDB:3U3G

    Description: Ribonuclease H (E.C.3.1.26.4)

  3. Crystal structure of LC9-RNase H1, a type 1 RNase H with the type 2 active-site motif PDB

    ID: PDB:4IBN

    Description: Ribonuclease H (E.C.3.1.26.4)

  4. Crystal structure of RNase H1 from halophilic archaeon Halobacterium salinarum NRC-1 PDB

    ID: PDB:4E19

    Description: ribonuclease H1 (E.C.3.1.26.4)

  5. Crystal structure of LC11-RNase H1 in complex with RNA/DNA hybrid PDB

    ID: PDB:4H8K

    Description: Ribonuclease H(E.C.3.1.26.4)/DNA/RNA hybrid

  6. RNH1_RAT UniProt:Swiss-Prot

    ID: Q5BK46

    Description: Ribonuclease H1 RNase H Magnesium 1 Magnesium 2 Magnesium 1 Magnesium 1 Magnesium 2

  7. Crystal structure of RNase H1 from halophilic archaeon Halobacterium salinarum NRC-1 PDB

    ID: PDB:4NYN

    Description: Ribonuclease HI (E.C.3.1.26.4)

  8. Genome-wide alterations in yeast strains lacking RNase H1, RNase H2, or both RNase H1 and RNase H2 ArrayExpress

    ID: E-GEOD-73334

    Description: sphates (rNMPs) into DNA during replication. Both ribonuclease (RNase) H1 and RNase H2 degrade the RNA component of R-loops, whereas only RNase H2 can remove one or a few rNMPs from DNA. We performed high-resolution mapping of mitotic recombination events througho...

  9. Crystal structure of the Ribonuclease H1 from Chlorobium tepidum PDB

    ID: PDB:3H08

    Description: Rnh (Ribonuclease H) (E.C.3.1.26.4)

  10. Genome-wide alterations in yeast strains lacking RNase H1, RNase H2, or both RNase H1 and RNase H2 BioProject

    ID: PRJNA296698

    Keywords: Variation

    Access Type: download

  11. Genome-wide distribution of RNA-DNA hybrids identifies RNase H targets in tRNA genes, retrotransposons and mitochondria ArrayExpress

    ID: E-GEOD-53420

    Description: employ ChIP-seq in strains expressing or lacking RNase H to map targets of RNase H activity throughout budding yeast genome. In wild-type strains, R-loops were readily detected over the 35S rDNA region transcribed by Pol I and over the 5S rDNA transcribed by Pol III. In strains ...

  12. Genome-wide distribution of RNA-DNA hybrids identifies RNase H targets in tRNA genes, retrotransposons and mitochondria BioProject

    ID: PRJNA231949

    Keywords: Epigenomics

    Access Type: download

  13. Human RNase H catalytic domain mutant D210N in complex with 20-mer RNA/DNA hybrid PDB

    ID: PDB:2QKB

    Description: Ribonuclease H1 (E.C.3.1.26.4)/RNA/DNA complex

  14. Human RNase H catalytic domain mutant D210N in complex with 14-mer RNA/DNA hybrid PDB

    ID: PDB:2QKK

    Description: Ribonuclease H1 (E.C.3.1.26.4)/RNA/DNA complex

  15. Expression data from Saccharomyces cerevisiae with Rnase H overexpression BioProject

    ID: PRJNA201411

    Keywords: Transcriptome or Gene expression

    Access Type: download

  16. Human RNase H catalytic domain mutant D210N in complex with 18-mer RNA/DNA hybrid PDB

    ID: PDB:2QK9

    Description: Ribonuclease H1 (E.C.3.1.26.4)/RNA/DNA complex

  17. Expression data from Saccharomyces cerevisiae with Rnase H overexpression ArrayExpress

    ID: E-GEOD-46652

    Description: ts up- or down-regulated comparing a strain where Rnase H is ectopically overexpressed versus wild type (empty vector); assessing the effect of DNA:RNA hybrid degradation on the transcriptom...

  18. Genome-wide alterations in yeast strains lacking RNase H1, RNase H2, or both RNase H1 and RNase H2 OmicsDI

    ID: E-GEOD-73334

    Date Released: 09-26-2015

    Description: sphates (rNMPs) into DNA during replication. Both ribonuclease (RNase) H1 and RNase H2 degrade the RNA component of R-loops, whereas only RNase H2 can remove one or a few rNMPs from DNA. We performed high-resolution mapping of mitotic recombination events througho...

  19. Transient RNA-DNA Hybrids Are Required for Efficient Double-Strand Break Repair BioProject

    ID: PRJNA335432

    Keywords: Transcriptome or Gene expression

    Access Type: download

    dataset.description: DNA damage within cells, and their degradation by RNAse H enzymes is important for maintaining genomic stability. Here, we identified an unexpected role for RNA-DNA hybrids and RNase H enzymes in DNA repair. ...
  20. Transient RNA-DNA Hybrids Are Required for Efficient Double-Strand Break Repair BioProject

    ID: PRJNA318794

    Keywords: Other

    Access Type: download

    dataset.description: DNA damage within cells, and their degradation by RNAse H enzymes is important for maintaining genomic stability. Here, we identified an unexpected role for RNA-DNA hybrids and RNase H enzymes in DNA repair. ...

Displaying 20 of 90 results for "RNASEH1"