Mutant loxP vectors for selectable marker recycle and conditional knock-outs
about
Centralspindlin links the mitotic spindle to the plasma membrane during cytokinesisFunctional redundancy between DNA ligases I and III in DNA replication in vertebrate cellsInterplay between DNA polymerases beta and lambda in repair of oxidation DNA damage in chicken DT40 cellsEvaluation of the chicken transcriptome by SAGE of B cells and the DT40 cell lineVertebrate DNA damage tolerance requires the C-terminus but not BRCT or transferase domains of REV1Activation-induced cytidine deaminase initiates immunoglobulin gene conversion and hypermutation by a common intermediateFull-length cDNAs from chicken bursal lymphocytes to facilitate gene function analysisGenetic manipulation of an exogenous non-immunoglobulin protein by gene conversion machinery in a chicken B cell lineAlternative Okazaki Fragment Ligation Pathway by DNA Ligase IIIRac-mediated Stimulation of Phospholipase Cγ2 Amplifies B Cell Receptor-induced Calcium Signaling.A CEP215-HSET complex links centrosomes with spindle poles and drives centrosome clustering in cancerTopBP1/Dpb11 binds DNA anaphase bridges to prevent genome instability.DNA ligases I and III cooperate in alternative non-homologous end-joining in vertebratesDefective nucleotide excision repair with normal centrosome structures and functions in the absence of all vertebrate centrinsLoss of centrioles causes chromosomal instability in vertebrate somatic cells.Regulation of the DNA damage response and gene expression by the Dot1L histone methyltransferase and the 53Bp1 tumour suppressorA role for PCNA ubiquitination in immunoglobulin hypermutation.A cis-acting diversification activator both necessary and sufficient for AID-mediated hypermutation.Visualisation of PCNA monoubiquitination in vivo by single pass spectral imaging FRET microscopy.Efficient transgene expression system using a cumate-inducible promoter and Cre-loxP recombination in avian cells.Classical Mus musculus Igκ enhancers support transcription but not high level somatic hypermutation from a V-lambda promoter in chicken DT40 cells.The receptor for the subgroup C avian sarcoma and leukosis viruses, Tvc, is related to mammalian butyrophilins, members of the immunoglobulin superfamily.The chicken as a model for large-scale analysis of vertebrate gene function.USF binding sequences from the HS4 insulator element impose early replication timing on a vertebrate replicator.Involvement of Rad18 in somatic hypermutationRestoration of mismatch repair functions in human cell line Nalm-6, which has high efficiency for gene targeting.Interaction between DNA Polymerase β and BRCA1Targeting of somatic hypermutation by immunoglobulin enhancer and enhancer-like sequences.Separation of mutational and transcriptional enhancers in Ig genes.Heat shock factor 2 is required for maintaining proteostasis against febrile-range thermal stress and polyglutamine aggregation.Phosphorylation at carboxyl-terminal S373 and S375 residues and 14-3-3 binding are not required for mouse p53 functionA method to convert mRNA into a gRNA library for CRISPR/Cas9 editing of any organismEngineering an efficient and tight D-amino acid-inducible gene expression system in Rhodosporidium/Rhodotorula species.Control of gene conversion and somatic hypermutation by immunoglobulin promoter and enhancer sequences.An experimental system for the evaluation of retroviral vector design to diminish the risk for proto-oncogene activation.Protein evolution by hypermutation and selection in the B cell line DT40Telomere length homeostasis and telomere position effect on a linear human artificial chromosome are dictated by the genetic backgroundMSH6- or PMS2-deficiency causes re-replication in DT40 B cells, but it has little effect on immunoglobulin gene conversion or on repair of AID-generated uracils.Construction of monophosphoryl lipid A producing Escherichia coli mutants and comparison of immuno-stimulatory activities of their lipopolysaccharidesAvian model for B-cell immunology--new genomes and phylotranscriptomics.
P2860
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P2860
Mutant loxP vectors for selectable marker recycle and conditional knock-outs
description
2001 nî lūn-bûn
@nan
2001 թուականին հրատարակուած գիտական յօդուած
@hyw
2001 թվականին հրատարակված գիտական հոդված
@hy
2001年の論文
@ja
2001年論文
@yue
2001年論文
@zh-hant
2001年論文
@zh-hk
2001年論文
@zh-mo
2001年論文
@zh-tw
2001年论文
@wuu
name
Mutant loxP vectors for selectable marker recycle and conditional knock-outs
@ast
Mutant loxP vectors for selectable marker recycle and conditional knock-outs
@en
Mutant loxP vectors for selectable marker recycle and conditional knock-outs
@nl
type
label
Mutant loxP vectors for selectable marker recycle and conditional knock-outs
@ast
Mutant loxP vectors for selectable marker recycle and conditional knock-outs
@en
Mutant loxP vectors for selectable marker recycle and conditional knock-outs
@nl
prefLabel
Mutant loxP vectors for selectable marker recycle and conditional knock-outs
@ast
Mutant loxP vectors for selectable marker recycle and conditional knock-outs
@en
Mutant loxP vectors for selectable marker recycle and conditional knock-outs
@nl
P2093
P2860
P3181
P356
P1433
P1476
Mutant loxP vectors for selectable marker recycle and conditional knock-outs
@en
P2093
J M Buerstedde
P2860
P2888
P3181
P356
10.1186/1472-6750-1-7
P407
P577
2001-01-01T00:00:00Z
P5875
P6179
1014915303