DNA size selection (>3-4kb) and purification of DNA using an improved homemade SPRI beads solution. v1 (protocols.io.uc4esyw)

protocols.io ◽  
2018 ◽  
Author(s):  
Monika Hassan
Keyword(s):  
2020 ◽  
Vol 305 ◽  
pp. 127346 ◽  
Author(s):  
M. Serra ◽  
T. Duc Mai ◽  
A.L. Serra ◽  
M.-C. Nguyen ◽  
A. Eisele ◽  
...  

Lab on a Chip ◽  
2020 ◽  
Vol 20 (1) ◽  
pp. 175-184 ◽  
Author(s):  
Nicolas Milon ◽  
Juan-Luis Fuentes Rojas ◽  
Adrien Castinel ◽  
Laurent Bigot ◽  
Géraud Bouwmans ◽  
...  

In third generation sequencing, long DNA molecules of more than ∼20 kbp are needed to obtain quality sequence data. Here we report a versatile technology for DNA size selection that fulfills this requirement.


2018 ◽  
Vol 75 (3) ◽  
pp. 133-138 ◽  
Author(s):  
QZ He ◽  
XJ Wu ◽  
QY He ◽  
JJ Xiang ◽  
CH Zhang ◽  
...  

2018 ◽  
Vol 92 (12) ◽  
Author(s):  
Zachary Strongin ◽  
Radwa Sharaf ◽  
D. Jake VanBelzen ◽  
Jeffrey M. Jacobson ◽  
Elizabeth Connick ◽  
...  

ABSTRACT Analytic treatment interruption (ATI) studies are required to evaluate strategies aimed at achieving ART-free HIV remission, but the impact of ATI on the viral reservoir remains unclear. We validated a DNA size selection-based assay for measuring levels of integrated HIV DNA and applied it to assess the effects of short-term ATI on the HIV reservoir. Samples from participants from four AIDS Clinical Trials Group ATI studies were assayed for integrated HIV DNA levels. Cryopreserved peripheral blood mononuclear cells (PBMCs) were obtained for 12 participants with available samples pre-ATI and approximately 6 months after ART resumption. Four participants also had samples available during the ATI. The median duration of ATI was 12 weeks. Validation of the HIV integrated DNA size-exclusion (HIDE) assay was performed using samples spiked with unintegrated HIV DNA, HIV-infected cell lines, and participant PBMCs. The HIDE assay eliminated 99% of unintegrated HIV DNA species and strongly correlated with the established Alu- gag assay. For the majority of individuals, integrated DNA levels increased during ATI and subsequently declined upon ART resumption. There was no significant difference in the levels of integrated HIV DNA between the pre- and post-ATI time points, with a median ratio of post- to pre-ATI HIV DNA levels of 0.95. Using a new integrated HIV DNA assay, we found minimal change in the levels of integrated HIV DNA in participants who underwent an ATI, followed by 6 months of ART. This suggests that short-term ATI can be conducted without a significant impact on the levels of integrated proviral DNA in the peripheral blood. IMPORTANCE Interventions aimed at achieving sustained antiretroviral therapy (ART)-free HIV remission require treatment interruption trials to assess their efficacy. However, these trials are accompanied by safety concerns related to the expansion of the viral reservoir. We validated an assay that uses an automated DNA size-selection platform for quantifying levels of integrated HIV DNA and is less sample- and labor-intensive than current assays. Using stored samples from AIDS Clinical Trials Group studies, we found that short-term ART discontinuation had minimal impact on integrated HIV DNA levels after ART resumption, providing reassurance about the reservoir effects of short-term treatment interruption trials.


Author(s):  
George C. Ruben ◽  
Kenneth A. Marx

Certain double stranded DNA bacteriophage and viruses are thought to have their DNA organized into large torus shaped structures. Morphologically, these poorly understood biological DNA tertiary structures resemble spermidine-condensed DNA complexes formed in vitro in the total absence of other macromolecules normally synthesized by the pathogens for the purpose of their own DNA packaging. Therefore, we have studied the tertiary structure of these self-assembling torus shaped spermidine- DNA complexes in a series of reports. Using freeze-etch, low Pt-C metal (10-15Å) replicas, we have visualized the microscopic DNA organization of both calf Thymus( CT) and linear 0X-174 RFII DNA toruses. In these structures DNA is circumferentially wound, continuously, around the torus into a semi-crystalline, hexagonal packed array of parallel DNA helix sections.


Sign in / Sign up

Export Citation Format

Share Document