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Model molecule predicts a twisted configuration of π-cloud around the molecular long axis.
At high coverage, we find a monolayer of side-lying molecules, where the molecular plane is surface-normal, and the molecular long axis is surface-parallel.
It involves the reorientation of the molecular long axes with respect to the (001) plane, by about 30°.
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However, data on cellular and molecular long-term responses of plants such as Brassicaceae (Arabidopsis), Fabaceae, and Poaceae has recently been published [ 2, 15, 22– 31].
Because of their high molecular weight, long chromatin fibers migrate with the pellet.
From an intra-molecular view, long helices in precursors could be related to shear-induced coil helix transition.
We explored a new synthetic strategy for ultra-high molecular weight long-chain branched (LCB) polymers with equal spacing between adjacent branch points.
Research at this scale requires a wide variety of techniques and members of the Lab incorporate paleontological, geological, and biogeographical data, in addition to comparative morphology, developmental biology, molecular techniques, long-term experimental manipulations, and phylogenetics in our studies.
Hence, our aim is to rationalize the experimental activity of known NNRTIs against a variety of RT mutants by combining molecular modeling, long-timescale atomistic molecular dynamics (MD) simulation sampling and ensemble docking.
Molecular mechanisms of long noncoding RNAs.
Wang, K.C. & Chang, H.Y. Molecular mechanisms of long noncoding RNAs.
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