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At least 199 records · Page 11Linked to original sources

Prime assembly with linear DNA donors enables large genomic insertions.

Targeted insertion of large DNA fragments has promising applications for genome engineering and gene therapy1,2. Twin prime-editing guide RNAs have enabled relatively large insertions, but the efficiency remains low for insertions greater than 400 base pairs3-6. Here we describe a prime assembly (PA) approach for the insertion of large DNA donor fragments, of which the ends are designed to overlap with the flaps generated by twin prime editing (twinPE). We used PA to insert one or multiple overlapping DNA fragments, with total insertion sizes ranging from 0.1 kb to 11 kb. An inhibitor of non-homologous end joining enhanced both the efficiency and precision of insertions. PA relies on DNA templates that are easily produced, does not require co-delivery of exogenous DNA-dependent DNA polymerases and proceeds in non-cycling cells, suggesting independence from canonical homology-directed repair pathways. Our study demonstrates that PA can initiate Gibson-like assembly in cells to generate gene insertions without double-stranded DNA breaks, recombinases or homology-directed repair.

Animals↗

Effect of p53 protein redox states on binding to supercoiled and linear DNA.

The binding of p53 to its DNA consensus sequence is modulated by the redox state of the protein in vitro. We have shown previously that reduced wild-type p53 binds strongly to supercoiled DNA (scDNA) regardless of the presence or absence of p53CON. Here we compare the effects of oxidation of p53 by azodicarboxylic acid bis[dimethylamide] (diamide) and other agents on p53 binding to p53CON and to scDNA. Oxidation decreases the binding of p53 to scDNA; however, under conditions where binding to p53CON in a DNA fragment is completely abolished, some residual binding to scDNA is still observed. Increasing the concentration of oxidized p53 confers minimal changes in p53 binding to both scDNA and p53CON. Reduction of the oxidized protein by dithiothreitol neither restores its binding to DNA nor to p53CON in DNA fragments. In the presence of excess zinc ions, oxidation of p53 is, however, reversible. We conclude that the irreversibility of p53 oxidation is due, at least in part, to the removal of intrinsic zinc from its position in the DNA binding domain accompanied by a conformational change of the p53 molecule after oxidation of the three cysteines to which the zinc ion is coordinated in the reduced protein.

DNA↗

Linear DNA elution dose response curves obtained in CHO cells with non-unwinding filter elution after appropriate selection of the lysis conditions.

The effect of detergent type, pH and temperature during lysis on the DNA elution dose response was studied under non-winding conditions in exponentially growing, plateau-phase and synchronous S-phase CHO cells. Lysis with sodium-N-laurylsarcosine (NLS) increased the DNA elution rate and resulted in higher DNA elution for the same absorbed radiation dose than lysis with sodium dodecyl sulphate (SDS). This increase in elution caused a reduction in the shoulder width of the DNA elution dose-response curve, but did not significantly affect the final slope. One hour incubation at elevated temperatures (60 degrees C) during lysis either with NLS or SDS further increased DNA elution. Under these conditions DNA elution dose-response curves with a small or zero shoulder were obtained with exponentially growing, plateau-phase or synchronized S-phase cells. DNA elution was reduced to about 50 per cent of the controls when the pH of the SDS lysis solution was adjusted from 9.6 to 7.6. This effect was observed in cells that were lysed at room temperature, as well as in cells lysed at 60 degrees C. When NLS was used for lysis, a similar reduction in pH did not alter the DNA elution dose-response curve at either lysis temperature. Based on these results it is suggested that the shoulder observed in the DNA elution dose-response curve reflects partial separation of DNA from associated proteins. A direct and unconditional correlation of the DNA filter elution behaviour, as observed under non-unwinding conditions, with the induction of DNA dsb may thus not always be justified. Caution is required when elution results are used to establish correlations between the level of induction of DNA dsb and cell killing.

Animals↗

Released chromatin: linearized DNA for high resolution fluorescence in situ hybridization.

Free DNA was prepared from routinely harvested and fixed cells for high resolution FISH mapping using either a sodium hydroxide/ethanol mixture or 70% formamide. Hybridization signals from cosmid probes appeared as extended lines. The average length of signals on DNA prepared with sodium hydroxide was significantly greater than with formamide. A set of overlapping cosmids from the HLA class II region was used to determine how precisely the actual overlap or gap between probes can be calculated from the measured overlap or gap between their signals. Lengths of the probe signals and their known kilobase lengths were used as an internal ruler. The mean values calculated from the measured length from 30 or more signals for each probe pair showed remarkable conformity with the known kilobase lengths of their overlaps and gaps. Immediately adjacent probes could also be ordered on the released DNA. These simple procedures dramatically increase the speed with which relationships between probes can be determined during contig construction.

Chromatin↗

The TGGCA-binding protein: a eukaryotic nuclear protein recognizing a symmetrical sequence on double-stranded linear DNA.

Low salt extracts of chicken oviduct nuclei contain a DNA binding protein with high affinity for specific DNA sequences in the flanking regions of the chicken lysozyme gene. Two of the three binding sites found within a total of 11 kb upstream from the promoter are located only 92 bp apart from each other. Upon comparison of the DNA binding sites, the symmetrical consensus sequence 5'- TGGCANNNTGCCA -3' can be deduced as the protein recognition site. This sequence is the central part of 23 to 25 base pairs protected by the DNA binding protein from DNAase I digestion. A homologous binding activity can be detected in nuclei from several chicken tissues and from mouse liver.

Animals↗

AFM characterization of single strand-specific endonuclease activity on linear DNA.

The specificity of nucleases for nicked and un-nicked double-stranded DNA has been characterized using atomic force microscopy (AFM). We have found that AFM has advantages over the usual macroscopic analyses, such as sucrose gradient centrifugation or electrophoresis, in characterizing nuclease digestion. In particular, short DNA fragments resulting from non-specific digestion were detected and, thus, the true length distribution of digested DNA was revealed. A simple numerical method is proposed to estimate the number of nicked sites per DNA molecule based on AFM images.

DNA↗

Mre11 assembles linear DNA fragments into DNA damage signaling complexes.

Mre11/Rad50/Nbs1 complex (MRN) is essential to suppress the generation of double-strand breaks (DSBs) during DNA replication. MRN also plays a role in the response to DSBs created by DNA damage. Hypomorphic mutations in Mre11 (which causes an ataxia-telangiectasia-like disease [ATLD]) and mutations in the ataxia-telangiectasia-mutated (ATM) gene lead to defects in handling damaged DNA and to similar clinical and cellular phenotypes. Using Xenopus egg extracts, we have designed a simple assay to define the biochemistry of Mre11. MRN is required for efficient activation of the DNA damage response induced by DSBs. We isolated a high molecular weight DNA damage signaling complex that includes MRN, damaged DNA molecules, and activated ATM. Complex formation is partially dependent upon Zn(2+) and requires an intact Mre11 C-terminal domain that is deleted in some ATLD patients. The ATLD truncation can still perform the role of Mre11 during replication. Our work demonstrates the role of Mre11 in assembling DNA damage signaling centers that are reminiscent of irradiation-induced foci. It also provides a molecular explanation for the similarities between ataxia-telangiectasia (A-T) and ATLD.

Amino Acid Motifs↗