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Natsumi Nakagawa
Natsumi Nakagawa
Verified email at sci.hokudai.ac.jp
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Year
The tetramerization domain of the tree shrew p53 protein displays unique thermostability despite sharing high sequence identity with the human p53 protein
N Nakagawa, S Sakaguchi, T Nomura, R Kamada, JG Omichinski, ...
Biochemical and Biophysical Research Communications 521 (3), 681-686, 2020
32020
Heterochiral Jun and Fos bZIP peptides form a coiled‐coil heterodimer that is competent for DNA binding
R Kamada, N Nakagawa, T Oyama, K Sakaguchi
Journal of Peptide Science 23 (7-8), 644-649, 2017
22017
Highly Similar Tetramerization Domains from the p53 Protein of Different Mammalian Species Possess Varying Biophysical, Functional and Structural Properties
S Sakaguchi, N Nakagawa, HM Wahba, J Wada, R Kamada, ...
International Journal of Molecular Sciences 24 (23), 16620, 2023
12023
Biomineralization through a Symmetry-Controlled Oligomeric Peptide
T Sakaguchi, N Nakagawa, K Mine, JIB Janairo, R Kamada, ...
Biomimetics 8 (8), 606, 2023
2023
Alterations in the stability and hetero-oligomerization of the p53 family in vertebrates
S Sakaguchi, N Nakagawa, H Wahba, R Kamada, JG Omichinski, ...
PROTEIN SCIENCE 30, 36-36, 2021
2021
Posttranslational modification and evolution of tetramerization domain in tumor suppressor protein p53
N Nakagawa
2021
EVOLUTION OF THE TETRAMERIZATION DOMAIN IN TUMOR SUPPRESSOR PROTEIN P53
N Nakagawa, J Wada, R Kamada, T Nomura, T Imagawa, K Sakaguchi
JOURNAL OF PEPTIDE SCIENCE 22, S22-S22, 2016
2016
ARGININE METHYLATION OF TETRAMERIZATION DOMAIN DESTABILIZES THE TETRAMERIC STRUCTURE OF TUMOR SUPPRESSOR PROTEIN P53
R Kamada, N Nakagawa, J Wada, K Sakaguchi
JOURNAL OF PEPTIDE SCIENCE 22, S128-S128, 2016
2016
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