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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.
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.
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.
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