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This enables figuring out the 3D architecture ... the DNA strand. However, it's not possible for every sequence. If it contains repeated nucleobases, such as a string of letters A, for example ...
DNA requires more than the right set of genes: It has to have the correct 3D architecture, which is traditionally the object of statistical physics, and polymer physics in particular.
Your DNA is continually damaged by sources both inside and outside your body. One especially severe form of damage called a ...
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Replicative DNA polymerases (Pol) function with a sliding clamp ... The detailed methods of assembly, grid formation, data collection, 3D map reconstruction, model building, and refinement are ...
MGM is a microdosimetric gamma model to calculate DNA ... strand_breaks = MGM.getSBI(yF) num_sites = MGM.getN_sites(yF) num_sites_with_DSB = MGM.getN_sites_with_DSB(yF) complexity_distribution = ...
Remote-controlled microflow using light-controlled state transitions within DNA condensates has been reported by scientists ...
model called the Difface, which can directly generate 3D facial images based on DNA sequences. Chen Luonan, a professor from the Hangzhou Institute for Advanced Study of University of Chinese ...
Figure 1: DSBs are tightly linked to mutations over the Ramos immunoglobulin V H and V λ regions. We next wanted to determine whether the appearance of DSBs over mutating loci was dependent on ...
Available on the web in an “early demo,” the model generates and streams video frames every 40 milliseconds. Via basic controls, viewers can explore areas within a video, similar to a 3D ...
When proteins are made in a cell, they start out as strings of amino acids, which have to be folded into the correct, 3D ...
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