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However, slower migration in comparison with free peptides indicates that the density of negative charge was higher or the molecule became smaller.
A study about IFN-a2a illustrated that the molecule became oxidized at room temperature which in turn induce an immune response [ 20].
When a G924K mutation was incorporated into the model, the molecule became strained due to the steric hindrance encountered by the K residue whereas a negatively charged residue at this position (G924E) was tolerated and providing structural reasons for the measured catalytic activities of PSKR1.
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That's because as the molecule becomes more complex at each step along the way, certain bonds become inaccessible.
While studying colon cancer, Dr. Frame and her colleagues discovered that the molecule becomes overactive and breaks down the tissue's normal structure.
But if some or all of its double bonds are converted to single bonds, the molecule becomes reactive and can form links with other atoms or molecules.
However, the researchers believe that HLA-G retains its ability to spark a response should the molecule become affiliated with a pathogen.
Analysis by size exclusion chromatography shows that, depending on temperature and reaction time, the molecular weight increases, the molecule become branched and ultimately cross-linked compounds are formed.
This interaction coefficient decreases when the number of carbon atoms in the n-alcohol molecule increases for both diesel blends and biodiesel blends because the non-polar part of the molecule becomes dominant against the polar hydroxyl group.
The unexpected consequence of this is that the molecule becomes perfectly planar.
This expected accuracy improves linearly as the molecule becomes smaller or less flexible.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com