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Gozoh Tsujimoto

Gozoh Tsujimoto

D-Index & Metrics

Biology and Biochemistry

D-Index
93
Citations
29712
World Ranking
2121
National Ranking
122

Overview

Gozoh Tsujimoto is affiliated with Kyoto University in Japan, with a research focus primarily situated within the fields of Medicine and Biochemistry, Genetics and Molecular Biology. Their work notably spans subfields such as Physiology and Molecular Biology, contributing to an understanding of biological processes at both systemic and molecular levels.

The scientist's research is centered on topics including gut microbiota and health, dietary effects on health, and diet and metabolism studies. These areas reflect an intersection of nutrition, microbiology, and metabolic regulation, highlighting an integrative approach to understanding physiological impacts of diet and microbial communities.

Tsujimoto has coauthored publications with several researchers, indicating a collaborative network across related disciplines. Frequent co-authors include Ikuo Kimura, Junki Miyamoto, Ryuji Ohue-Kitano, Keita Watanabe, and Takahiro Yamada.

Among their recent work, a significant publication is titled "Maternal gut microbiota in pregnancy influences offspring metabolic phenotype in mice," published in 2020 in the journal Science. This paper has accrued substantial citations, reflecting engagement from the scientific community in the study's findings on maternal microbiota and its role in offspring metabolism.

The primary publication venue for Tsujimoto's work recorded here is Science, a multidisciplinary journal known for disseminating research across the natural sciences.

  • Gozoh Tsujimoto's main research fields: Medicine and Biochemistry, Genetics and Molecular Biology
  • Subfields: Physiology and Molecular Biology
  • Main topics: Gut microbiota and health, Dietary Effects on Health, Diet and metabolism studies
  • Frequent coauthors: Ikuo Kimura, Junki Miyamoto, Ryuji Ohue-Kitano, Keita Watanabe, Takahiro Yamada
  • Recent publication: "Maternal gut microbiota in pregnancy influences offspring metabolic phenotype in mice," 2020, Science
  • Publication venue: Science

Best Publications

  • Free fatty acids regulate gut incretin glucagon-like peptide-1 secretion through GPR120.

    Akira Hirasawa;Keiko Tsumaya;Takeo Awaji;Susumu Katsuma

  • The gut microbiota suppresses insulin-mediated fat accumulation via the short-chain fatty acid receptor GPR43

    Ikuo Kimura;Kentaro Ozawa;Daisuke Inoue;Takeshi Imamura

  • Short-chain fatty acids and ketones directly regulate sympathetic nervous system via G protein-coupled receptor 41 (GPR41)

    Ikuo Kimura;Daisuke Inoue;Takeshi Maeda;Takafumi Hara

  • Bile acids promote glucagon-like peptide-1 secretion through TGR5 in a murine enteroendocrine cell line STC-1

    Susumu Katsuma;Akira Hirasawa;Gozoh Tsujimoto

  • Light activates the adrenal gland: Timing of gene expression and glucocorticoid release

    Atsushi Ishida;Tatsushi Mutoh;Tomoko Ueyama;Hideki Bando;Hideki Bando

  • Dysfunction of lipid sensor GPR120 leads to obesity in both mouse and human

    Atsuhiko Ichimura;Akira Hirasawa;Odile Poulain-Godefroy;Odile Poulain-Godefroy;Amélie Bonnefond;Amélie Bonnefond

  • Primary systemic carnitine deficiency is caused by mutations in a gene encoding sodium ion-dependent carnitine transporter

    Jun-ichi Nezu;Ikumi Tamai;Asuka Oku;Rikiya Ohashi

  • Identification of novel microRNA targets based on microRNA signatures in bladder cancer.

    Takahiro Ichimi;Hideki Enokida;Yasushi Okuno;Ryo Kunimoto

  • Salt-sensitive hypertension in circadian clock-deficient Cry-null mice involves dysregulated adrenal Hsd3b6.

    Masao Doi;Yukari Takahashi;Rie Komatsu;Fumiyoshi Yamazaki

  • Maternal gut microbiota in pregnancy influences offspring metabolic phenotype in mice

    Ikuo Kimura;Ikuo Kimura;Junki Miyamoto;Junki Miyamoto;Ryuji Ohue-Kitano;Ryuji Ohue-Kitano;Keita Watanabe

  • Mice Genetically Deficient in Vasopressin V1a and V1b Receptors Are Resistant to Jet Lag

    Yoshiaki Yamaguchi;Toru Suzuki;Yasutaka Mizoro;Hiroshi Kori

  • How reliable are G-protein-coupled receptor antibodies?

    Martin C. Michel;Thomas Wieland;Gozoh Tsujimoto

  • The vasopressin V1b receptor critically regulates hypothalamic-pituitary-adrenal axis activity under both stress and resting conditions

    Akito Tanoue;Shuji Ito;Kenji Honda;Sayuri Oshikawa

  • Free fatty acids induce cholecystokinin secretion through GPR120.

    Toshiki Tanaka;Susumu Katsuma;Susumu Katsuma;Tetsuya Adachi;Taka-aki Koshimizu

  • The regulation of adipogenesis through GPR120.

    Chizu Gotoh;Yeon Hee Hong;Tomoyo Iga;Daisuke Hishikawa

  • TDAG8 Is a Proton-sensing and Psychosine-sensitive G-protein-coupled Receptor

    Ju-Qiang Wang;Junko Kon;Chihiro Mogi;Masayuki Tobo

  • The α1D-adrenergic receptor directly regulates arterial blood pressure via vasoconstriction

    Akito Tanoue;Yoshihisa Nasa;Takaaki Koshimizu;Hitomi Shinoura

  • Impaired social interaction and reduced anxiety-related behavior in vasopressin V1a receptor knockout mice

    Nobuaki Egashira;Akito Tanoue;Tomomi Matsuda;Emi Koushi

  • KMD-3213, a novel, potent, alpha 1a-adrenoceptor-selective antagonist: characterization using recombinant human alpha 1-adrenoceptors and native tissues.

    K Shibata;R Foglar;K Horie;K Obika

  • The SCFA Receptor GPR43 and Energy Metabolism

    Ikuo Kimura;Daisuke Inoue;Kanako Hirano;Gozoh Tsujimoto

Frequent Co-Authors

Akira Hirasawa
Akira Hirasawa Okayama University
Akito Tanoue
Akito Tanoue Kumamoto University
Susumu Katsuma
Susumu Katsuma University of Tokyo
Hirohisa Saito
Hirohisa Saito Juntendo University
Hiroaki Ohno
Hiroaki Ohno Kyoto University
Shinya Oishi
Shinya Oishi Kyoto University
Nobutaka Fujii
Nobutaka Fujii Kyoto University
Yukihiko Sugimoto
Yukihiko Sugimoto Kumamoto University
Toshio Tanaka
Toshio Tanaka Mie University
Osamu Ogawa
Osamu Ogawa Kyoto University

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