Pages that link to "Q53616216"
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The following pages link to RAG and HMGB1 proteins: purification and biochemical analysis of recombination signal complexes. (Q53616216):
Displaying 32 items.
- VprBP binds full-length RAG1 and is required for B-cell development and V(D)J recombination fidelity (Q24299516) (← links)
- Structure of the RAG1 nonamer binding domain with DNA reveals a dimer that mediates DNA synapsis (Q27655283) (← links)
- Mapping and Quantitation of the Interaction between the Recombination Activating Gene Proteins RAG1 and RAG2. (Q30372461) (← links)
- Thermal dependency of RAG1 self-association properties (Q33317413) (← links)
- HMG-box domain stimulation of RAG1/2 cleavage activity is metal ion dependent (Q33326487) (← links)
- HMGB1/2 can target DNA for illegitimate cleavage by the RAG1/2 complex (Q33421568) (← links)
- Synapsis alters RAG-mediated nicking at Tcrb recombination signal sequences: implications for the “beyond 12/23” rule (Q33899849) (← links)
- RAG and HMGB1 create a large bend in the 23RSS in the V(D)J recombination synaptic complexes. (Q34321067) (← links)
- Identification and characterization of a gain-of-function RAG-1 mutant (Q34718124) (← links)
- Coupling of V(D)J recombination to the cell cycle suppresses genomic instability and lymphoid tumorigenesis (Q34760276) (← links)
- Fluorescence resonance energy transfer analysis of recombination signal sequence configuration in the RAG1/2 synaptic complex (Q38638162) (← links)
- Real-time monitoring of RAG-catalyzed DNA cleavage unveils dynamic changes in coding end association with the coding end complex (Q36106902) (← links)
- Evidence for Ku70/Ku80 association with full-length RAG1. (Q36580698) (← links)
- Cooperative recruitment of HMGB1 during V(D)J recombination through interactions with RAG1 and DNA. (Q36684764) (← links)
- A plant homeodomain in RAG-2 that binds Hypermethylated lysine 4 of histone H3 is necessary for efficient antigen-receptor-gene rearrangement (Q37013832) (← links)
- High mobility group proteins and their post-translational modifications (Q37015673) (← links)
- Full-length RAG1 promotes contact with coding and intersignal sequences in RAG protein complexes bound to recombination signals paired in cis. (Q37169788) (← links)
- An activation-induced cytidine deaminase-independent mechanism of secondary VH gene rearrangement in preimmune human B cells (Q37283144) (← links)
- Molecular mechanism underlying RAG1/RAG2 synaptic complex formation (Q37344083) (← links)
- Real-time analysis of RAG complex activity in V(D)J recombination (Q37369348) (← links)
- Vitamin C promotes maturation of T-cells (Q37406667) (← links)
- H3K4me3 induces allosteric conformational changes in the DNA-binding and catalytic regions of the V(D)J recombinase (Q37682326) (← links)
- Mechanistic Basis for RAG Discrimination between Recombination Sites and the Off-Target Sites of Human Lymphomas (Q39446730) (← links)
- A biochemically defined system for coding joint formation in V(D)J recombination (Q39947968) (← links)
- H3K4me3 stimulates the V(D)J RAG complex for both nicking and hairpinning in trans in addition to tethering in cis: implications for translocations (Q42536440) (← links)
- Accumulation of B1-like B cells in transgenic mice over-expressing catalytically inactive RAG1 in the periphery (Q44640313) (← links)
- V(D)J recombinase binding and cleavage of cryptic recombination signal sequences identified from lymphoid malignancies (Q46813910) (← links)
- Targeting high mobility group box protein 1 ameliorates testicular inflammation in experimental autoimmune orchitis. (Q53677430) (← links)
- A novel RAG1 mutation reveals a critical in vivo role for HMGB1/2 during V(D)J recombination (Q61306825) (← links)
- Cut-and-Run: A Distinct Mechanism by which V(D)J Recombination Causes Genome Instability (Q64071396) (← links)
- Transposon molecular domestication and the evolution of the RAG recombinase (Q93012725) (← links)
- Structural basis for the activation and suppression of transposition during evolution of the RAG recombinase (Q99567476) (← links)