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Exact(30)
Intercalation leads to the formation of strong H bonding network.
Complex 2 is extraordinarily stable at room temperature may be attributed to these hydrogen bonding network.
In both cases, the complexes are linked through an extensive hydrogen bonding network.
The layers consist of deoxycholic acid molecules, which are linked with hydrogen bonding network.
However, a worse hydrogen bonding network is at least a strong hint that the respective structure is inferior.
Furthermore, the quality of the hydrogen bonding network with respect to undesirable contacts and missing a hydrogen bonds is analyzed.
Similar(29)
These two regions contribute a robust hydrogen-bonding network to the YfiB-YfiR interface, resulting in a tightly bound complex.
Accordingly, an extended hydrogen-bonding network must exist that would allow the cross interactions that are necessary for mixing.
This is achieved by the conformational flexibilty of the heme binding site and the extensive hydrogen-bonding network.
Further, Glu106 forms a hydrogen bond acceptor interaction with Thr199, resulting in a zinc hydroxide threonine glutamate hydrogen-bonding network.
The only consistent H-bonding network thus assigns His497 the role of H-bond acceptor.
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