Nuclear magnetic resonance spectroscopy and molecular modeling reveal that different hydrogen bonding patterns are possible for G.U pairs: one hydrogen bond for each G.U pair in r(GGCGUGCC)(2) and two for each G.U pair in r(GAGUGCUC)(2).

Chen X, McDowell JA, Kierzek R, Krugh TR, Turner DH.

Open source

DOI
10.1021/bi992938e
Published
2000-08-01
Container
Biochemistry
Publisher
Not recorded
Open access
no

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BibTeX

@article{allodium:10.1021/bi992938e,
  title = {Nuclear magnetic resonance spectroscopy and molecular modeling reveal that different hydrogen bonding patterns are possible for G.U pairs: one hydrogen bond for each G.U pair in r(GGCGUGCC)(2) and two for each G.U pair in r(GAGUGCUC)(2).},
  author = {Chen X and  McDowell JA and  Kierzek R and  Krugh TR and  Turner DH.},
  year = {2000},
  journal = {Biochemistry},
  doi = {10.1021/bi992938e},
  url = {https://doi.org/10.1021/bi992938e}
}

RIS

TY  - JOUR
TI  - Nuclear magnetic resonance spectroscopy and molecular modeling reveal that different hydrogen bonding patterns are possible for G.U pairs: one hydrogen bond for each G.U pair in r(GGCGUGCC)(2) and two for each G.U pair in r(GAGUGCUC)(2).
AU  - Chen X
AU  -  McDowell JA
AU  -  Kierzek R
AU  -  Krugh TR
AU  -  Turner DH.
PY  - 2000
JO  - Biochemistry
DO  - 10.1021/bi992938e
UR  - https://doi.org/10.1021/bi992938e
ER  - 

APA

X, C., JA, M., R, K., TR, K., & DH., T. (2000). Nuclear magnetic resonance spectroscopy and molecular modeling reveal that different hydrogen bonding patterns are possible for G.U pairs: one hydrogen bond for each G.U pair in r(GGCGUGCC)(2) and two for each G.U pair in r(GAGUGCUC)(2).. Biochemistry. https://doi.org/10.1021/bi992938e

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