日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Author Correction: Dendritic, delayed, stochastic CaMKII activation in behavioural time scale plasticity

作者更正:行为时间尺度可塑性中的树突、延迟、随机 CaMKII 激活

Jain, Anant; Nakahata, Yoshihisa; Pancani, Tristano; Watabe, Tetsuya; Rusina, Polina; South, Kelly; Adachi, Kengo; Yan, Long; Simorowski, Noriko; Furukawa, Hiro; Yasuda, Ryohei

Dendritic, delayed, stochastic CaMKII activation in behavioural time scale plasticity.

行为时间尺度可塑性中的树突、延迟、随机 CaMKII 激活

Jain Anant, Nakahata Yoshihisa, Pancani Tristano, Watabe Tetsuya, Rusina Polina, South Kelly, Adachi Kengo, Yan Long, Simorowski Noriko, Furukawa Hiro, Yasuda Ryohei

Dendritic, delayed, and stochastic CaMKII activation underlies behavioral time scale plasticity in CA1 synapses

树突状细胞中延迟且随机的CaMKII激活是CA1突触行为时间尺度可塑性的基础。

Jain, Anant; Nakahata, Yoshihisa; Watabe, Tetsuya; Rusina, Polina; South, Kelly; Adachi, Kengo; Yan, Long; Simorowski, Noriko; Furukawa, Hiro; Yasuda, Ryohei

Functional characterization of the biogenic amine transporters on human macrophages

人巨噬细胞上生物胺转运蛋白的功能表征

Mackie, Phillip M; Gopinath, Adithya; Montas, Dominic M; Nielsen, Alyssa; Smith, Aidan; Nolan, Rachel A; Runner, Kaitlyn; Matt, Stephanie M; McNamee, John; Riklan, Joshua E; Adachi, Kengo; Doty, Andria; Ramirez-Zamora, Adolfo; Yan, Long; Gaskill, Peter J; Streit, Wolfgang J; Okun, Michael S; Khoshbouei, Habibeh

None of the rotor residues of F1-ATPase are essential for torque generation

F1-ATPase的转子残基均非扭矩产生所必需。

Chiwata, Ryohei; Kohori, Ayako; Kawakami, Tomonari; Shiroguchi, Katsuyuki; Furuike, Shou; Adachi, Kengo; Sutoh, Kazuo; Yoshida, Masasuke; Kinosita, Kazuhiko Jr

Torque generation in F1-ATPase devoid of the entire amino-terminal helix of the rotor that fills half of the stator orifice

F1-ATPase中缺少转子氨基末端螺旋(占据定子孔的一半)时产生的扭矩

Kohori, Ayako; Chiwata, Ryohei; Hossain, Mohammad Delawar; Furuike, Shou; Shiroguchi, Katsuyuki; Adachi, Kengo; Yoshida, Masasuke; Kinosita, Kazuhiko Jr

Chemo-mechanical coupling in F(1)-ATPase revealed by catalytic site occupancy during catalysis

通过催化过程中催化位点的占据情况揭示F(1)-ATPase中的化学-机械耦合

Shimo-Kon, Rieko; Muneyuki, Eiro; Sakai, Hiroshi; Adachi, Kengo; Yoshida, Masasuke; Kinosita, Kazuhiko Jr