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The shift was predicted accurately using crystal plasticity and theory of variant selection.
The MFSD8 p.F282Lfs13* frame shift was predicted to occur within the 7th transmembrane helix and would delete 239 C-terminal codons.
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Furthermore, the combining effects of pressure and shear on spinodal shift are predicted.
This shift is predicted to be due to the RGD peptide (~ 1700 Da) (Haiss et al. 2007; Amendola and Meneghetti 2009).
79% percent of the mRNAs that shifted in response to eIF4E were predicted, while 62% percent of those that did not shift were predicted.
The age shift is predicted to occur within 3 years of vaccination.
A greater shift is predicted to occur in the northeastern direction, along the shores of the St Lawrence River, where zones with a risk index >0.65 are predicted to shift by 450 km, at a rate of approximately 11 km per year.
In RB1CC1, a significant amino acid shift is predicted, namely R1514C, with a high Miyata score of 3.06; this results in a positively charged residue being changed to a hydrophilic residue.
However, this blue shift is predicted by the gas-phase results, albeit with a decrease in the overall accuracy of the λmax values, reminiscent of previous gas-phase B3P86/LanL2DZ calculations.
Over 60%% of the test chemical shifts were predicted within 0.2 ppm, while only 5%% still presented a prediction error of more than 1 ppm.
On the other hand, the bathochromic shifts are predicted for the fluorination of inner rings.
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