• norsk
    • English
  • English 
    • norsk
    • English
  • Login
Browsing by Author 
  •   Home
  • Browsing by Author
  •   Home
  • Browsing by Author
JavaScript is disabled for your browser. Some features of this site may not work without it.

Browsing NTNU Open by Author "Castaneda Zegarra, Sergio Miguel"

  • 0-9
  • A
  • B
  • C
  • D
  • E
  • F
  • G
  • H
  • I
  • J
  • K
  • L
  • M
  • N
  • O
  • P
  • Q
  • R
  • S
  • T
  • U
  • V
  • W
  • X
  • Y
  • Z
  • Æ
  • Ø
  • Å

Sort by:

Order:

Results:

Now showing items 1-3 of 3

  • title
  • issue date
  • submit date
  • author
  • ascending
  • descending
  • 5
  • 10
  • 20
  • 40
  • 60
  • 80
  • 100
    • Generation of a Mouse Model Lacking the Non-Homologous End-Joining Factor Mri/Cyren 

      Castaneda Zegarra, Sergio Miguel; Huse, Camilla; Røsand, Øystein; Sarno, Antonio; Xing, Mengtan; Zhang, Qindong; Alirezaylavasani, Amin; Werner, Julia; Ji, Ping; Liabakk, Nina-Beate; Wang, Wei; Bjørås, Magnar; Oksenych, Valentyn (Journal article; Peer reviewed, 2019)
      Classical non-homologous end joining (NHEJ) is a molecular pathway that detects, processes, and ligates DNA double-strand breaks (DSBs) throughout the cell cycle. Mutations in several NHEJ genes result in neurological ...
    • Genetic interaction between the non‐homologous end joining factors during B and T lymphocyte development: in vivo mouse models 

      Castaneda Zegarra, Sergio Miguel; Fernandez Berrocal, Marion Silvana; Tkachev, Max; Yao, Rouan; Esnardo Upfold, Nikki Lyn; Oksenych, Valentyn (Peer reviewed; Journal article, 2020)
      Non-homologous end joining (NHEJ) is the main DNA repair mechanism for the repair of double-strand breaks (DSBs) throughout the course of the cell cycle. DSBs are generated in developing B and T lymphocytes during V(D)J ...
    • Mediator of DNA Damage Checkpoint Protein 1 Facilitates V(D)J Recombination in Cells Lacking DNA Repair Factor XLF 

      Beck, Carole; Castaneda Zegarra, Sergio Miguel; Huse, Camilla; Xing, Mengtan; Oksenych, Valentyn (Journal article; Peer reviewed, 2020)
      DNA double-strand breaks (DSBs) trigger the Ataxia telangiectasia mutated (ATM)-dependent DNA damage response (DDR), which consists of histone H2AX, MDC1, RNF168, 53BP1, PTIP, RIF1, Rev7, and Shieldin. Early stages of B ...

      Contact Us | Send Feedback

      Privacy policy
      DSpace software copyright © 2002-2019  DuraSpace

      Service from  Unit
       

       

      Browse

      ArchiveCommunities & CollectionsBy Issue DateAuthorsTitlesSubjectsDocument TypesJournals

      My Account

      Login

      Contact Us | Send Feedback

      Privacy policy
      DSpace software copyright © 2002-2019  DuraSpace

      Service from  Unit