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Earlier models suggest that cohesin's ATPase head domain is only involved in the initial DNA binding step, and that ATP hydrolysis releases the DNA from cohesin.
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When we expressed the N155A HCCS mutant in the absence of the cytochrome c acceptor, we observed that the mutant purified with heme at levels comparable to WT HCCS, indicating that Asn155 is not required for the initial heme binding step that facilitates the recruitment of the cytochrome c substrate.
In single adsorption, kinetics experiment demonstrated that binding step was fast and that it could be well described by the pseudo-second order-equation where the equilibrium time were 180 min for LC and 60 min for Cu II).
An additional problem in the binding step is that some loci might be less likely than others to be bound.
A modification in the manufacturer's published protocol pooled the two samples from each subject timepoint at the column binding step such that total RNA was purified from one PAXgene™ column.
It is likely that a balance between heme binding (step 1) and release (step 4) has evolved to optimize both the import of apocytochrome c and the synthesis of holocytochrome c, with conserved residues impacting either or both steps.
The transition of Bax into its pro-apoptotic active form includes a reversible membrane-binding step that is distinct from membrane integration.
This behavior appears to be partially conserved in our microtubule-complexed models of kinesin, as reflected by a 'pincer-like' closure of loops L9 and L11 that contain switch I and switch II (respectively) and increased ordering of loop L9 that accompanies the ATP binding step (see Figure 3C,F and also Figure 2 figure supplement 3A,B).
The society claims that the government missed one crucial – and legally binding step – in its preparations for cuts: that it failed to carry out an "equality impact assessment" to show how the plans will affect women.
It is not known whether the β1 integrin and DDR1 functionally interact to regulate adhesion to collagen and integrin function that controls the binding step of collagen phagocytosis.
The dramatic difference in kinetics can only be explained by a slow rate-determining reaction that precedes the bimolecular binding step.
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