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Norihiro Namba

Showing results (1-10 of 10) with videos related to

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ACS Chemical Neuroscience|October 13, 2025
Kinetic Mechanism of Heparin-Induced Fibrillation of α-SynucleinTakashi Ohgita, Norihiro Namba, Nao Minami, et al.
Biophysics and Physicobiology|May 28, 2024
Physicochemical mechanisms of aggregation and fibril formation of α-synuclein and apolipoprotein A-ITakashi Ohgita, Hiroki Kono, Norihiro Namba, et al.
The Journal of Biological Chemistry|July 6, 2025
The structural characteristics of cellular phospholipid acyl chains required for ABCA1-mediated HDL formationKohjiro Nagao, Mayu Matsuo, Yoshie Hori, et al.
Scientific Reports|April 27, 2022
Mechanisms of enhanced aggregation and fibril formation of Parkinson's disease-related variants of α-synucleinTakashi Ohgita, Norihiro Namba, Hiroki Kono, et al.
Scientific Reports|April 16, 2025
Amyloid-forming property of the N-terminal 1-70 residues of human apolipoprotein A-IVNorihiro Namba, Tokiko Danjo, Yuichiro Kitagawa, et al.
Biophysical Journal|December 25, 2025
Phosphatidylethanolamine modulates α-synuclein membrane-binding behaviorNorihiro Namba, Shiori Ariyoshi, Honori Shiroshita, et al.
Scientific Reports|October 29, 2023
Amyloidogenic 60-71 deletion/ValThr insertion mutation of apolipoprotein A-I generates a new aggregation-prone segment that promotes nucleation through entropic effectsNorihiro Namba, Takashi Ohgita, Hiroko Tamagaki-Asahina, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 15, 2020
Sulfated glycosaminoglycans mediate prion-like behavior of p53 aggregatesNaoyuki Iwahashi, Midori Ikezaki, Taro Nishikawa, et al.
The Journal of Biological Chemistry|July 26, 2019
Mechanisms of aggregation and fibril formation of the amyloidogenic N-terminal fragment of apolipoprotein A-IChiharu Mizuguchi, Miho Nakagawa, Norihiro Namba, et al.
FEBS Letters|March 26, 2024
Generation of novel anti-apoE monoclonal antibodies that selectively recognize apoE isoformsTakashi Ohgita, Koto Sakai, Nodoka Fukui, et al.
Pageof 1

Showing results (1-10 of 10) with videos related to

Sort By:
Pageof 1
ACS Chemical Neuroscience|October 13, 2025
Kinetic Mechanism of Heparin-Induced Fibrillation of α-SynucleinTakashi Ohgita, Norihiro Namba, Nao Minami, et al.
Biophysics and Physicobiology|May 28, 2024
Physicochemical mechanisms of aggregation and fibril formation of α-synuclein and apolipoprotein A-ITakashi Ohgita, Hiroki Kono, Norihiro Namba, et al.
The Journal of Biological Chemistry|July 6, 2025
The structural characteristics of cellular phospholipid acyl chains required for ABCA1-mediated HDL formationKohjiro Nagao, Mayu Matsuo, Yoshie Hori, et al.
Scientific Reports|April 27, 2022
Mechanisms of enhanced aggregation and fibril formation of Parkinson's disease-related variants of α-synucleinTakashi Ohgita, Norihiro Namba, Hiroki Kono, et al.
Scientific Reports|April 16, 2025
Amyloid-forming property of the N-terminal 1-70 residues of human apolipoprotein A-IVNorihiro Namba, Tokiko Danjo, Yuichiro Kitagawa, et al.
Biophysical Journal|December 25, 2025
Phosphatidylethanolamine modulates α-synuclein membrane-binding behaviorNorihiro Namba, Shiori Ariyoshi, Honori Shiroshita, et al.
Scientific Reports|October 29, 2023
Amyloidogenic 60-71 deletion/ValThr insertion mutation of apolipoprotein A-I generates a new aggregation-prone segment that promotes nucleation through entropic effectsNorihiro Namba, Takashi Ohgita, Hiroko Tamagaki-Asahina, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 15, 2020
Sulfated glycosaminoglycans mediate prion-like behavior of p53 aggregatesNaoyuki Iwahashi, Midori Ikezaki, Taro Nishikawa, et al.
The Journal of Biological Chemistry|July 26, 2019
Mechanisms of aggregation and fibril formation of the amyloidogenic N-terminal fragment of apolipoprotein A-IChiharu Mizuguchi, Miho Nakagawa, Norihiro Namba, et al.
FEBS Letters|March 26, 2024
Generation of novel anti-apoE monoclonal antibodies that selectively recognize apoE isoformsTakashi Ohgita, Koto Sakai, Nodoka Fukui, et al.
Pageof 1