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Displaying 16 of 16 results for "TDRD5"
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  1. TDRD5_BOVIN UniProt:Swiss-Prot

    ID: E1BPH3

    Description: Tudor domain-containing protein 5 HTH OST-type 1 HTH OST-type 2 HTH OST-ty...

  2. TDRD5_XENLA UniProt:Swiss-Prot

    ID: A1L1H3

    Description: Tudor domain-containing protein 5 HTH OST-type 1 HTH OST-type 2 HTH OST-ty...

  3. TDRD5_XENTR UniProt:Swiss-Prot

    ID: A0JM98

    Description: Tudor domain-containing protein 5 HTH OST-type 1 HTH OST-type 2 HTH OST-ty...

  4. TDRD5_RAT UniProt:Swiss-Prot

    ID: B4F7C4

    Description: Tudor domain-containing protein 5 HTH OST-type 1 HTH OST-type 2 HTH OST-ty...

  5. Crystal structure of conserved motif in TDRD5 PDB

    ID: PDB:3S93

    Description: Tudor domain-containing protein 5

  6. TDR15_HUMAN UniProt:Swiss-Prot

    ID: B5MCY1

    Description: Tudor domain-containing protein 15 Tudor 1 Tudor 2

  7. TDRD6_MOUSE UniProt:Swiss-Prot

    ID: P61407

    Description: Tudor domain-containing protein 6 Tudor 1 Tudor 2

  8. TDRD5_AILME UniProt:Swiss-Prot

    ID: D2H3M0

    Description: Tudor domain-containing protein 5 HTH OST-type 1 HTH OST-type 2 HTH OST-ty...

  9. TDRD5_CANLF UniProt:Swiss-Prot

    ID: E2QTD3

    Description: Tudor domain-containing protein 5 HTH OST-type 1 HTH OST-type 2 HTH OST-ty...

  10. The mouse cytosine-5 RNA methyltransferase NSun2 is a component of the chromatoid body and required for testis differentiation OmicsDI

    ID: E-GEOD-39480

    Date Released: 06-02-2014

    Description: pathways, including Ddx4, Mili, Piwil1 (Miwi) and Tudor domain containing (Tdrd) proteins. Germ cell differentiation was blocked specifically at the pachytene stage by lack of NSun2, as spermatogonial and Sertoli cells were unaffected in knockout mice. We observed the same phenotype when we simultaneously deleted NSun2 with Dnmt2, the only other characterized cytosine-5 RNA methyltransferase to date, indicating that Dnmt2 was not functionally redundant for NSun2 in spermatogonial stem cells or Sertoli cells. Thus, our data indicate that RNA methylation pathways play an essential role in male germ cell differentiation. Four sample groups: Testes from Wild-type and NSun...

  11. Drosophila melanogaster strain:w : tejas and tapas function for female germline maintenance and piRNA production in D. melanogaster BioProject

    ID: PRJNA255443

    Keywords: other

    Access Type: download

    dataset.description: nd tapas (tap) are paralogues of vertebrate genes Tdrd5 and Tdrd7, respectively. Both the genes are predominantly expressed in the germline and localize to germline specific organelle, nuage . W...
  12. The mouse cytosine-5 RNA methyltransferase NSun2 is a component of the chromatoid body and required for testis differentiation ArrayExpress

    ID: E-GEOD-39480

    Description: pathways, including Ddx4, Mili, Piwil1 (Miwi) and Tudor domain containing (Tdrd) proteins. Germ cell differentiation was blocked specifically at the pachytene stage by lack of NSun2, as spermatogonial and Sertoli cells were unaffected in knockout mice. We observed the same phenotype when we simultaneously deleted NSun2 with Dnmt2, the only other characterized cytosine-5 RNA methyltransferase to date, indicating that Dnmt2 was not functionally redundant for NSun2 in spermatogonial stem cells or Sertoli cells. Thus, our data indicate that RNA methylation pathways play an essential role in male germ cell differentiation. Four sample groups: Testes from Wild-type and NSun...

  13. The mouse cytosine-5 RNA methyltransferase NSun2 is a component of the chromatoid body and required for testis differentiation BioProject

    ID: PRJNA170955

    Keywords: Transcriptome or Gene expression

    Access Type: download

  14. Tdrkh Interacts with Miwi and Miwi2 in the primary piRNA biogenesis pathway ArrayExpress

    ID: E-GEOD-47151

    Description: . Here, we show that an evolutionarily conserved Tudor and KH-domain containing protein, Tdrkh (a.k.a. Tdrd2), partners with Miwi and Miwi2 in mice via symmetrically dimethylated arginine residues in Miwi and Miwi2. Tdrkh is localized to pi-bodies and piP-bodies and is required for nuclear localization of Miwi2. Genetic deletion of Tdrkh arrests meiosis at the zygotene stage, demethylates Line1 DNA, and up-regulates Li...

  15. Tdrkh Interacts with Miwi and Miwi2 in the primary piRNA biogenesis pathway. OmicsDI

    ID: E-GEOD-47151

    Date Released: 09-26-2013

    Description: . Here, we show that an evolutionarily conserved Tudor and KH-domain containing protein, Tdrkh (a.k.a. Tdrd2), partners with Miwi and Miwi2 in mice via symmetrically dimethylated arginine residues in Miwi and Miwi2. Tdrkh is localized to pi-bodies and piP-bodies and is required for nuclear localization of Miwi2. Genetic deletion of Tdrkh arrests meiosis at the zygotene stage, demethylates Line1 DNA, and up-regulates Li...

  16. Tdrkh is essential for spermatogenesis and participates in primary piRNA biogenesis in the germline BioProject

    ID: PRJNA204938

    Keywords: Transcriptome or Gene expression

    Access Type: download

    dataset.description: . Here, we show that an evolutionarily conserved Tudor and KH-domain containing protein, Tdrkh (a.k.a. Tdrd2), partners with Miwi and Miwi2 in mice via symmetrically dimethylated arginine residues in Miwi and Miwi2. Tdrkh is localized to pi-bodies and piP-bodies and is required for nuclear localization of Miwi2. Genetic deletion of Tdrkh arrests meiosis at the zygotene stage, demethylates Line1 DNA, and up-regulates Li...

Displaying 16 of 16 results for "TDRD5"