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Various simple and fast cell disruption methods were evaluated for the efficient disruption of lactobacilli and pediococci.
Open image in new window Figure 2 Efficient disruption of CCR5 in Jurkat-KI-R5 cells using plasmid or RNA-based CRISPR/CAS9 technology.
Targeting of these network hubs by the oncoprotein E6 of "high-risk" human papillomaviruses (HPVs) serves to effect the efficient disruption of cellular processes.
The application of a newly available version of NIMROD, with more complete atomic physics, shows promise in matching the experimental trends and could be an invaluable tool for increasing our confidence in designing efficient disruption mitigation for ITER.
The methods developed here should permit the rapid and efficient disruption of any bacterial gene, the computational analysis provides new insight into group II intron target site recognition, and the set of E. coli DExH/D-box protein and DNA helicase disruptants should be useful for analyzing the function of these proteins.
In contrast, despite efficient disruption of microtubules (Fig. 8B), nocodazole did not affect actin ring formation and cell spreading of control cells during the investigated time period and had no effect on Nef's ability to interfere with both processes.
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A simple fact remains: there is something intrinsically repellant about a world in which our food, jobs and personal relationships are replaced by digital proxies in the name of ultra-efficient disruption.
Above data showed that our oriP-EBNA1-based CRISPR/Cas9 system could mediate efficient gene disruption.
The knowledge of solubility of different gases in triglycerides is required to design efficient cell disruption processes for biodiesel production from wet biomass.
We demonstrate that codelivery of these MSTN TALENs induce highly specific and efficient gene disruption in a variety of human, cattle, and mouse cells.
Efficient CCR5 disruption in Jurkat-KI-R5 cells with either Cas9 or Cas9n plasmid was further confirmed by Western blotting analysis of the CCR5 protein and by PCR assay (Fig. 2C and 2D).
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