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1 C condensins are not required to compact DNA chirally.
2 elopment of this class of catalysts built on chirally amplified helical scaffolds should contribute t
9 r evolution of D-ribose RNA and probably was chirally directed by the orientation of early RNA molecu
12 s structural transitions of nucleosomes into chirally distinct states as the driver of the contrastin
15 R(P) chirality at every other position (R(P) chirally enriched MPOs) or (ii) alternating R(P) MP/phos
17 rine under relatively mild conditions yields chirally enriched serine octamers and that the chiral pr
18 here is direct evidence for nanometer scale, chirally induced organization into specific structures.
19 is indicated by the observation that COMC-6 (chirally labeled with deuterium at the exomethylene carb
23 n of such catalysts will be elucidated using chirally modified platinum catalysts for the asymmetric
27 amide, with a mainly protonated backbone and chirally mounted imidazolylmethylene side chains that ar
28 31 ASOs were prepared with control of the PS chirally of each linkage within the gap in an attempt to
30 circularly polarized luminescence (CPL) in a chirally ordered supramolecular assembly, with 24% dissy
31 ghly luminescent achiral chromophores and/or chirally perturbing moieties), as well as for the improv
33 cids, and (c) amines afforded, respectively, chirally pure (a) oligoesters, (b) depsidipeptides, and
35 l)- and -dipeptidoylbenzotriazoles to afford chirally pure 1,3,4-thiadiazol-2-yl-substituted amino ac
41 presentative series 4a-i was prepared as the chirally pure R(+) enantiomers, and from these, the 4-ch
42 evelopment of methods for the preparation of chirally pure solids, in particular where the building b
45 e media, and show their potential to achieve chirally selective amplification within widely tunable p
46 chaean earth's anoxic atmosphere followed by chirally selective damage of biomolecules due to circula
47 his is the first case in which assemblies of chirally selective elongated structures are observed in
48 g of the enantiomeric pair to DNA is clearly chirally selective, and each of the enantiomers was foun
49 ers to exhibit "magic" numbers, which can be chirally selective, these experiments provide a rigorous
56 hol side product and the racemization of the chirally unstable alpha-substituted aldehyde intermediat
57 M structures of Escherichia coli gyrase with chirally wrapped 217 bp DNA with and without the fluoroq
58 ily populates an intermediate state with DNA chirally wrapped around the enzyme, in both the presence