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The use of conjugated polymers allows versatile interactions between cells and flexible processable materials, while providing a platform for electrical stimulation, which is particularly relevant when targeting differentiation of neural stem cells and further application for therapy or drug screening.
Fourth, despite the fact that both internet and SL counseling were perceived to provide better privacy protection and greater convenience with regard to time and place, traditional counseling was regarded as better able to support more fluent and versatile interactions between counselors and clients.
The cooperative molecular mode by which this protease catalyzes collagen breakdown, described herein, offers direct insights into the versatile interactions of matrix proteases with ECM.
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Furthermore, traditional counseling was regarded as better able to support more fluent and versatile interaction between the counselor and client than the other two computer-mediated channels.
Among synaptic post-synaptic proteins the PDZ domain (post synaptic density protein (PSD95), Drosophila disc large tumor suppressor (dlg), and zo-1 protein) is a highly versatile interaction motif that connects many of the proteins in the post-synaptic junction.
Nevertheless, incredibly versatile interaction of the bacterial protein with host molecules suggests that, upon delivery, CagA may act as a pathogenic scaffold/adaptor, which simultaneously perturbs multiple host signalling pathways and thereby promotes transformation.
Rational molecular design of supramolecular biofunctional materials exploit powerful and versatile noncovalent interactions, which offer many advantages, such as responsiveness, reversibility, tunability, biomimicry, modularity, predictability, and, most importantly, adaptiveness.
The intrinsically disordered nature of the EPIYA motifs may enable versatile protein interaction because of its structural flexibility (Dyson and Wright, 2005; Dunker et al., 2008; Sigalov, 2010).
Although their DNA-binding selectivity is biochemically and structurally well characterized, structures of homodimeric and ternary complexes point to Ets domains functioning as versatile protein-interaction modules.
In this study we could show that Bag5 also interacts with GRP78/BiP confirming that the Bag proteins may be more versatile in their interactions with molecular chaperones.
Complexes 1 and 2 construct the 2-D and 3-D supramolecular architectures through versatile hydrogen bond interactions, respectively.
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