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Journal of Bioscience and Bioengineering|December 7, 2021
Quartz crystal microbalance sensor for the detection of collagen model peptides based on the formation of triple helical structureSota Fuji, Kotaro Tanaka, Shiho Kishikawa, et al.Journal of the American Chemical Society|August 14, 2003
Characterization of collagen model peptides containing 4-fluoroproline; (4(S)-fluoroproline-pro-gly)10 forms a triple helix, but (4(R)-fluoroproline-pro-gly)10 does notMasamitsu Doi, Yoshinori Nishi, Susumu Uchiyama, et al.Biochemistry|April 20, 2005
Different effects of 4-hydroxyproline and 4-fluoroproline on the stability of collagen triple helixYoshinori Nishi, Susumu Uchiyama, Masamitsu Doi, et al.Journal of Peptide Science : an Official Publication of the European Peptide Society|May 10, 2005
Collagen-like triple helix formation of synthetic (Pro-Pro-Gly)10 analogues: (4(S)-hydroxyprolyl-4(R)-hydroxyprolyl-Gly)10, (4(R)-hydroxyprolyl-4(R)-hydroxyprolyl-Gly)10 and (4(S)-fluoroprolyl-4(R)-fluoroprolyl-Gly)10Masamitsu Doi, Yoshinori Nishi, Susumu Uchiyama, et al.Journal of Peptide Science : an Official Publication of the European Peptide Society|June 11, 2005
Conformational analysis of human calcitonin in solutionKiyoshi Ogawa, Shigenori Nishimura, Masamitsu Doi, et al.Biopolymers|May 19, 2012
Conformational preferences of 4-chloroproline residuesHae Sook Park, Byung Jin Byun, Daisuke Motooka, et al.The Journal of Physical Chemistry. B|March 3, 2012
Polymorphism of collagen triple helix revealed by 19F NMR of model peptide [Pro-4(R)-hydroxyprolyl-Gly]3-[Pro-4(R)-fluoroprolyl-Gly]-[Pro-4(R)-hydroxyprolyl-Gly]3Kazuki Kawahara, Nobuaki Nemoto, Daisuke Motooka, et al.Biopolymers|October 25, 2011
The triple helical structure and stability of collagen model peptide with 4(S)-hydroxyprolyl-Pro-Gly unitsDaisuke Motooka, Kazuki Kawahara, Shota Nakamura, et al.Pageof 1