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Fig. 7 The microbial growth inhibition induced by different binary concentrations of the tested powders.
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Decreased concentrations of the binary complex may prevent the inhibitor was induced into cell by the tight binding of binary complexes during lipoprotein metabolism in the treatment of CVD.
Heat capacity for four concentrations of the binary system (PZ + MDEA) was also measured.
The critical micelle concentrations of the binary mixtures were studied using conductivity and surface tension measurements, at different mole fractions of TRX or SLES.
Escalating concentrations of the binary complex (the enzyme) shown in ' A ' (ranging from ∼6.5 nM to 25 nM) have been applied identically to the two substrates (GSTP at 1.7 µM and eIF2aP at 2.8 µM) for 3, 5, 12, or 25 min. The fraction of the substrate dephosphorylated is indicated under each experimental point.
To describe the output formation rate F as a function of the input (ADP levels) we used Eq. (5): (21) V k (ADP ) (B1 + T ) - V p (ADP ) (B2 + T ) = 0 where Vk and Vp are effective phosphorylation and de-phosphorylation rates, B1 = [ PPDK1 RP] and B2 = [ PPDK2 RP] are the concentrations of the binary complexes and T = [ PPDK1 RP PPDK2] is the ternary complex concentration.
At non-saturating concentrations of the inducer (0.5 1.5 µg/mL) the population was split and yielded a binary population distribution.
Revised Figure 3C presents a detailed comparison of the dephosphorylation reactions containing escalating concentrations of the specific (eIF2αP) or the non-specific (GSTP) substrate and fixed concentration of PP1-PPP1R15 binary complex.
In terms of the protein concentrations, this mutual information expresses how well the ratio of the steady-state concentrations of the ternary complex ABC and the free adaptor protein B are balanced while at the same time requiring the concentration of both binary complexes (AB and BC) to be as low as possible.
Their binary electrolytes containing high concentration of the corresponding lithium salt ([Li+] >1.6 mol kg−1) show Li+ ion transference number (tLi+) as high as 0.6 0.7.
Gas concentration of the binary gas mixture is derived from the theoretical relationship to thermal conductivity.
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