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Dive into the research topics where Kanae Sasaki is active.

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Featured researches published by Kanae Sasaki.


Journal of Biochemistry | 2015

Organelle autoregulation—stress responses in the ER, Golgi, mitochondria and lysosome

Kanae Sasaki; Hiderou Yoshida

Organelle autoregulation is a homeostatic mechanism to regulate the capacity of each organelle according to cellular demands. The endoplasmic reticulum (ER) stress response increases the expression of ER chaperones and ER-associated degradation factors when the capacity of the ER becomes insufficient, e.g. during cellular differentiation or viral propagation, and which can be restored through increased synthesis of secretory or membrane proteins. In the Golgi stress response, insufficient organelle capacity is responded to by augmentation of glycosylation enzyme expression and vesicular transport components. The mitochondrial stress response upregulates mitochondrial chaperone and protease expression in the mitochondrial matrix and intermembrane space when unfolded proteins accumulate in the mitochondria. The lysosome stress response is activated during autophagy to enhance the function of the lysosome by transcriptional induction of lysosome genes including cathepsins. However, many of the molecular mechanisms of organelle autoregulation remain unclear. Here, we review recent discoveries in organelle autoregulation and their molecular mechanisms.


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

OSW-1 activates the mammalian Golgi stress response

Nana Murakami; Kanae Sasaki; Sadao Wakabayashi; Mai Taniguchi; Masafumi Yohda; Kaori Sakurai; Hiderou Yoshida


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

Transcriptional regulation of human GALNT8 gene by the mucin pathway of the Golgi stress response

Ryosuke Yasuki; Hirotada Kawamura; Kazuhiro Yoshikawa; Ayumi Murata; Kanae Sasaki; Mai Taniguchi; Sadao Wakabayashi; Hiderou Yoshida


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

Promoter analysis of SIAT7B gene whose expression is regulated by mucin pathway of the Golgi stress response

Sadao Wakabayashi; Yuuki Kishimoto; Miho Ikezaki; Mai Taniguchi; Kanae Sasaki; Hiderou Yoshida


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

Cross-talk between the mucin pathway and the TFE3 pathway in the mammalian Golgi stress response

Hirotada Kawamura; Kazuhiro Yoshikawa; Ayumi Murata; Kanae Sasaki; Mai Taniguchi; Sadao Wakabayashi; Hiderou Yoshida


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

Regulation of stress response to the disruption of calcium homeostasis in the Golgi apparatus

Kanae Sasaki; Mai Taniguchi; Sadao Wakabayashi; Hiderou Yoshida


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

Analysis of the Golgi stress response pathway that regulates the transcription of proteoglycan glycosylation enzymes

Mai Taniguchi; Ryota Komori; Chiho Okuda; Ryuya Tanaka; Nana Takagi; Yuki Itoi; Kanae Sasaki; Sadao Wakabayashi; Hiderou Yoshida


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

The role of Golgi stress response during differentiation of glial cells

Kento Nishitani; Yoshiho Arakawa; Ayumi Murata; Keisuke Kubota; Kanae Sasaki; Mai Taniguti; Sadao Wakabayashi; Hiderou Yoshida


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

Promoter analysis of human NDST2 gene, of which expression is induced by the proteoglycan pathway of the Golgi stress response

Ryuya Tanaka; Mayu Yamamoto; Sachiko Midori; Sadao Wakabayashi; Kanae Sasaki; Mai Taniguchi; Hiderou Yoshida


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

The Golgi stress response during differentiation of plasma cells

Chihiro Inoue; Mai Taniguchi; Sadao Wakabayashi; Kanae Sasaki; Michiko Saito; Boaz Tirosh; Hidero Yoshida

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Kaori Sakurai

Tokyo University of Agriculture and Technology

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Masafumi Yohda

Tokyo University of Agriculture and Technology

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