Zobrazeno 1 - 10
of 25
pro vyhledávání: '"Kanae Sasaki"'
Autor:
Kanae Sasaki, Takuya Adachi, Fumi Morishita, Marika Toide, Yuto Watanabe, Hajime Tajima Sakurai, Sadao Wakabayashi, Satoshi Kusumi, Toshiyuki Yamaji, Kaori Sakurai, Daisuke Koga, Kentaro Hanada, Masafumi Yohda, Hiderou Yoshida
The Golgi stress response is an important cytoprotective system that enhances Golgi function in response to cellular demand, while cells damaged by prolonged Golgi stress undergo cell death to ensure the survival of organisms. OSW-1, a natural compou
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::1ff16d0c6dfe009e981c2ef86d2f0dd6
https://doi.org/10.1101/2023.05.18.541279
https://doi.org/10.1101/2023.05.18.541279
Autor:
Kanae Sasaki, Miyu Sakamoto, Iona Miyake, Reishi Tanaka, Ryuya Tanaka, Azusa Tanaka, Misaki Terami, Ryota Komori, Mai Taniguchi, Sadao Wakabayashi, Hajime Tajima Sakurai, Hiderou Yoshida
The Golgi stress response is a homeostatic mechanism that augments Golgi function when Golgi function becomes insufficient (Golgi stress). Glycosylation of the core proteins of proteoglycans is one of the important functions of the Golgi. If the prod
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::7b858130bd7d312e03cbe62d4915b49d
https://doi.org/10.1101/2023.05.16.541051
https://doi.org/10.1101/2023.05.16.541051
Autor:
Kanae Sasaki, Hiderou Yoshida
Publikováno v:
FEBS Letters. 593:2330-2340
Organelles have been studied traditionally as single units, but a novel concept is now emerging: each organelle has distinct functional zones that regulate specific functions. The Golgi apparatus seems to have various zones, including zones for: glyc
Autor:
Kanae Sasaki, Hiderou Yoshida
Publikováno v:
Cell Structure and Function. 44:85-94
In research on cell biology, organelles have been a major unit of such analyses. Researchers have assumed that the inside of an organelle is almost uniform in regards to its function, even though each organelle has multiple functions. However, we are
Autor:
Mai Taniguchi, Hiderou Yoshida, Mohamad Ikhwan Jamaludin, Sadao Wakabayashi, Hirotada Kawamura, Kanae Sasaki, Miyu Sakamoto, Hayataka Takase, Ryota Komori
Publikováno v:
Cell Structure and Function. 44:137-151
The Golgi apparatus is an organelle where membrane or secretory proteins receive post-translational modifications such as glycosylation and sulfation, after which the proteins are selectively transported to their final destinations through vesicular
Autor:
Eiko Aoyagi, Kensuke Ihara, Shuji Tohda, Hotaka Kito, Kanae Sasaki, Satomi Hamada, Yui Tooyama, Tetsuo Sasano, Naoya Ichimura
Publikováno v:
Heart and vessels. 37(6)
Although many wearable single-lead electrocardiogram (ECG) monitoring devices have been developed, information regarding their ECG quality is limited. This study aimed to evaluate the quality of single-lead ECG in healthy subjects under various condi
Autor:
Gulen Yesilbag Tonga, Yi-Wei Lee, Vincent M. Rotello, Rubul Mout, Moumita Ray, Kanae Sasaki, Tristan Tay
Publikováno v:
ACS Nano. 11:2452-2458
Genome editing through the delivery of CRISPR/Cas9-ribonulceoprotein (Cas9-RNP) reduces unwanted gene targeting and avoids integrational mutagenesis that can occur through gene delivery strategies. Direct and efficient delivery of Cas9-RNP into the c
Autor:
Masami Takeo, Koichi Hagiya, Motoki Ooi, Reina Asa, Masayo Okamoto, Keigo Kuchida, Kanae Sasaki
Publikováno v:
Nihon Chikusan Gakkaiho. 88:139-143
Autor:
Ryota Komori, Hirotada Kawamura, Hayataka Takase, Hiderou Yoshida, Sadao Wakabayashi, Miyu Sakamoto, Kanae Sasaki, Mohamad Ikhwan Jamaludin
The Golgi apparatus is an organelle where membrane or secretory proteins receive post-translational modifications such as glycosylation and sulfation, after which the proteins are selectively transported to their final destinations through vesicular
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::5464fbec77f09eefe657ed2723615c76
https://doi.org/10.1101/710616
https://doi.org/10.1101/710616
Autor:
Mayu Kimura, Ikuroh Ohsawa, Hiderou Yoshida, Kanae Sasaki, Masafumi Yohda, Kaori Sakurai, Yosuke Fukutani
Publikováno v:
Bioorganicmedicinal chemistry letters. 29(14)
OSW-1 is a plant-derived natural product proposed to selectively kill cancer cells by binding to members of the oxysterol binding protein family, thereby disrupting lipid/sterol homeostasis. However, how these protein-ligand interactions mediate cell