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Dive into the research topics where Makoto Asaumi is active.

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Featured researches published by Makoto Asaumi.


Journal of Neurochemistry | 2008

Brain‐specific carnitine palmitoyl‐transferase‐1c: role in CNS fatty acid metabolism, food intake, and body weight

Michael J. Wolfgang; Seung Hun Cha; David S. Millington; Gary W. Cline; Gerald I. Shulman; Akira Suwa; Makoto Asaumi; Takeshi Kurama; Teruhiko Shimokawa; M. Daniel Lane

While the brain does not utilize fatty acids as a primary energy source, recent evidence shows that intermediates of fatty acid metabolism serve as hypothalamic sensors of energy status. Increased hypothalamic malonyl‐CoA, an intermediate in fatty acid synthesis, is indicative of energy surplus and leads to the suppression of food intake and increased energy expenditure. Malonyl‐CoA functions as an inhibitor of carnitine palmitoyl‐transferase 1 (CPT1), a mitochondrial outer membrane enzyme that initiates translocation of fatty acids into mitochondria for oxidation. The mammalian brain expresses a unique homologous CPT1, CPT1c, that binds malonyl‐CoA tightly but does not support fatty acid oxidation in vivo, in hypothalamic explants or in heterologous cell culture systems. CPT1c knockout (KO) mice under fasted or refed conditions do not exhibit an altered CNS transcriptome of genes known to be involved in fatty acid metabolism. CPT1c KO mice exhibit normal levels of metabolites and of hypothalamic malonyl‐CoA and fatty acyl‐CoA levels either in the fasted or refed states. However, CPT1c KO mice exhibit decreased food intake and lower body weight than wild‐type littermates. In contrast, CPT1c KO mice gain excessive body weight and body fat when fed a high‐fat diet while maintaining lower or equivalent food intake. Heterozygous mice display an intermediate phenotype. These findings provide further evidence that CPT1c plays a role in maintaining energy homeostasis, but not through altered fatty acid oxidation.


Proceedings of the National Academy of Sciences of the United States of America | 2006

The brain-specific carnitine palmitoyltransferase-1c regulates energy homeostasis

Michael J. Wolfgang; Takeshi Kurama; Yun Dai; Akira Suwa; Makoto Asaumi; Shun Ichiro Matsumoto; Seung Hun Cha; Teruhiko Shimokawa; M. Daniel Lane


Archive | 2013

Nitrogen-containing aromatic heterocyclic compound

Minoru Kameda; Ikumi Kuriwaki; Kazuhiko Iikubo; Hiroyuki Hisamichi; Yuichiro Kawamoto; Hiroyuki Moritomo; Tomoyuki Suzuki; Takashi Futami; Atsushi Suzuki; Kazuhisa Tsunoyama; Makoto Asaumi; Hiroshi Tomiyama; Atsushi Noda; Yoshinori Iwai; Kazuo Tokuzaki; Haruki Okada; Kozo Miyasaka


Archive | 2013

Novel fgfr3 fusion product

Atsushi Suzuki; Makoto Asaumi; Kazuhisa Tsunoyama; Kouichi Nishimura; Akifumi Morinaka; Tomohiro Yamauchi; Masayasu Yoshino; Hiroaki Yoshizaki


Archive | 2011

DETECTION METHOD OF NOVEL RET FUSION

Nobuaki Shindo; Kouichi Nishimura; Yorikata Sano; Makoto Asaumi; Aya Yamanaka; Takashi Futami; Tatsuya Kawase


Archive | 2013

Methods for detecting FGFR3/TACC3 fusion genes

Atsushi Suzuki; Makoto Asaumi; Kazuhisa Tsunoyama; Kouichi Nishimura; Akifumi Morinaka; Tomohiro Yamauchi; Masayasu Yoshino; Hiroaki Yoshizaki


Archive | 2013

NOVEL FGFR3 FUSION

Atsushi Suzuki; Makoto Asaumi; Kazuhisa Tsunoyama; Kouichi Nishimura; Akifumi Morinaka; Tomohiro Yamauchi; Masayasu Yoshino; Hiroaki Yoshizaki


Archive | 2017

nova fusão fgfr3

Akifumi Morinaka; Atsushi Suzuki; Hiroaki Yoshizaki; Kazuhisa Tsunoyama; Kouichi Nishimura; Makoto Asaumi; Masayasu Yoshino; Tomohiro Yamauchi


Archive | 2015

NOVEL FGFR3 FUSION PRODUCT FGFR3

Atsushi Suzuki; Makoto Asaumi; Kazuhisa Tsunoyama; Kouichi Nishimura; Akifumi Morinaka; Tomohiro Yamauchi; Masayasu Yoshino; Hiroaki Yoshizaki


Archive | 2014

DERIVADOS HETEROCICLICOS NITROGENADOS CON ACCION SOBRE EL CANCER DE VEJIGA

Kazuhiko Iikubo; Hiroyuki Hisamichi; Yuichiro Kawamoto; Hiroyuki Moritomo; Tomoyuki Suzuki; Takashi Futami; Atsushi Suzuki; Kazuhisa Tsunoyama; Makoto Asaumi; Hiroshi Tomiyama; Atsushi Noda; Yoshinori Iwai; Kazuo Tokuzaki; Haruki Okada; Kozo Miyasaka; Minoru Kameda; Ikumi Kuriwaki

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Atsushi Suzuki

Fujita Health University

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Atsushi Suzuki

Fujita Health University

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