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The combination N H⋯F and N H⋯N hydrogen bonds results in the formation of complementary DADA (D and A represent donor and acceptor, respectively) array motif.
The different crystal structures were controlled by not only the different coordinating and bridging modes of the edtza or (datza)2− ligands but also simultaneously the formation of complementary intermolecular hydrogen bonds.
The formation of complementary shape, and hydrogen bonding, electrostatic, and hydrophobic interactions between the imprinting cavities and the template proteins is the driving force for effective and specific recognition of protein imprinted polymer.
During T2, the formation of complementary single stranded DNA sequences at the ends of the broken chromosomes should greatly favor their interaction by Rad52-dependent annealing, particularly when there are no Rad51 filaments present to inhibit it (Figure 1)[18].
Moving away from the equally-split 25% frequency of each base, or 50% GC content, sequence complexity is reduced, and this facilitates the formation of complementary structures.
One group of SNPs overlaps the ETS and CRE motifs, suggesting that this mechanism of cooperative binding works through sequence-dependent DNA structural changes that allow formation of complementary DNA conformations at overlapping sites (Panne et al. 2007).
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Early stages in the evolutionary pathway of cells presumably centred on RNA molecules, which not only present specific catalytic surfaces but also contain the potential for their own duplication through the formation of a complementary RNA molecule.
They may be involved in gene expression control by duplex formation of their complementary transcripts, as detected in several other systems [42].
Today's nucleotides G, C, A, T, U that are based on pentoses, appear to be the most suitable nucleotides for the formation of the complementary structure consisting of two imperfect "triplets".
A trinucleotide is a minimal weak template, and formation of a complementary pair of imperfect "triplets" (Fig. 1) can only occur if all available components are optimal for this interaction.
Formation of the complementary complex depends critically on the energy of the interaction between the amino acid and DN at the first stage, on stacking between the adjacent nucleotides, and on the number of hydrogen bonds between complementary nucleotides at the 2nd stage.
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