研究者業績

小野 啓

オノ ヒラク  (Hiraku Ono)

基本情報

所属
千葉大学 予防医学センター 教授
学位
医学博士(2001年3月 東京大学)

J-GLOBAL ID
200901067300291495
researchmap会員ID
5000005052

学歴

 2

委員歴

 1

論文

 117
  • 越坂 理也, 横尾 英孝, 長島 健悟, 佐藤 泰憲, 前田 祐香里, 武田 健治, 石川 耕, 小野 啓, 齋木 厚人, 龍野 一郎, 津下 一代, 高原 充佳, 下村 伊一郎, 笹子 敬洋, 門脇 孝, 横手 幸太郎
    糖尿病 67(Suppl.1) S-215 2024年4月  
  • Takeshi Yamamotoya, Yukino Ohata, Yasuyuki Akasaka, Shun Hasei, Masa-Ki Inoue, Yusuke Nakatsu, Machi Kanna, Hiroki Yamazaki, Akifumi Kushiyama, Midori Fujishiro, Hiraku Ono, Hideyuki Sakoda, Tetsuya Yamada, Hisamitsu Ishihara, Tomoichiro Asano
    PNAS nexus 3(4) pgae150 2024年4月  
    Mutations in the Trk-fused gene (TFG) cause hereditary motor and sensory neuropathy with proximal dominant involvement, which reportedly has high co-incidences with diabetes and dyslipidemia, suggesting critical roles of the TFG in metabolism as well. We found that TFG expression levels in white adipose tissues (WATs) were elevated in both genetically and diet-induced obese mice and that TFG deletion in preadipocytes from the stromal vascular fraction (SVF) markedly inhibited adipogenesis. To investigate its role in vivo, we generated tamoxifen-inducible adipocyte-specific TFG knockout (AiTFG KO) mice. While a marked down-regulation of the peroxisome proliferator-activated receptor gamma target, de novo lipogenesis (DNL), and mitochondria-related gene expressions were observed in subcutaneous WAT (scWAT) from AiTFG KO mice, these effects were blunted in SVF-derived adipocytes when the TFG was deleted after differentiation into adipocytes, implying cell nonautonomous effects. Intriguingly, expressions of thyroid hormone receptors, as well as carbohydrate responsive element-binding protein β, which mediates the metabolic actions of thyroid hormone, were drastically down-regulated in scWAT from AiTFG KO mice. Reduced DNL and thermogenic gene expressions in AiTFG KO mice might be attributable to impaired thyroid hormone action in vivo. Finally, when adipocyte TFG was deleted in either the early or the late phase of high-fat diet feeding, the former brought about an impaired expansion of epididymal WAT, whereas the latter caused prominent adipocyte cell death. TFG deletion in adipocytes markedly exacerbated hepatic steatosis in both experimental settings. Collectively, these observations indicate that the TFG plays essential roles in maintaining normal adipocyte functions, including an enlargement of adipose tissue, thyroid hormone function, and thermogenic gene expressions, and in preserving hypertrophic adipocytes.
  • Takuya Minamizuka, Junji Kobayashi, Hayato Tada, Masaya Koshizaka, Yoshiro Maezawa, Hiraku Ono, Koutaro Yokote
    Internal medicine (Tokyo, Japan) 63(15) 2137-2142 2024年  
    The patient was a 54-year-old woman with familial hypercholesterolemia and remarkable Achilles tendon thickening. At 20 years old, the patient had a total cholesterol level of approximately 300 mg/dL. She started receiving rosuvastatin (5 mg/day) for low-density lipoprotein cholesterol (LDL-C) 235 mg/dL at 42 years old, which was increased to 10 mg/day at 54 years old, decreasing her serum LDL-C level to approximately 90 mg/dL. The serum Lp (a) level was 9 mg/dL. A computed tomography coronary angiogram showed no significant stenosis. Next-generation sequencing revealed a frameshift variant in LDL receptor (LDLR) (heterozygous) and a missense variant in proprotein convertase subtilisin/kaxin type 9 (PCSK9) (heterozygous). Continued statin therapy, in addition to low Lp (a) and female sex, can help prevent cardiovascular disease.
  • Shinsuke Sakai, Youichi Tanaka, Yusuke Tsukamoto, Shihoko Kimura-Ohba, Atsushi Hesaka, Kenji Hamase, Chin-Ling Hsieh, Eiryo Kawakami, Hiraku Ono, Kotaro Yokote, Mitsuaki Yoshino, Daisuke Okuzaki, Hiroyo Matsumura, Atsuko Fukushima, Masashi Mita, Maiko Nakane, Masao Doi, Yoshitaka Isaka, Tomonori Kimura
    Kidney360 2023年12月15日  
    BACKGROUND: The aberrant glucose circadian rhythm is associated with the pathogenesis of diabetes. Similar to glucose metabolism in kidney and liver, d-alanine, a rare enantiomer of alanine, shows circadian alteration, although the effect of d-alanine on glucose metabolism has not been explored. Here we show that d-alanine acts on the circadian clock and affects glucose metabolism in the kidney. METHODS: The blood and urinary levels of d-alanine in mice were measured using two-dimensional high performance liquid chromatography system. Metabolic effects of d-alanine were analysed in mice and in primary culture of kidney proximal tubular cells from mice. Behavioural and gene expression analyses of circadian rhythm were performed using mice bred under constant darkness. RESULTS: d-Alanine levels in blood exhibited a clear intrinsic circadian rhythm. Since this rhythm was regulated by the kidney through urinary excretion, we examined the effect of d-alanine on kidney. In kidney, d-alanine induced expressions of genes involved in gluconeogenesis and circadian rhythm. Treatment of d-alanine mediated glucose production in mice. Ex vivo glucose production assay demonstrated that treatment of d-alanine induced glucose production in primary culture of kidney proximal tubular cells, where d-amino acids are known to be reabsorbed, but not in that of liver cells. Gluconeogenetic effect of d-alanine has an intraday variation, and this effect was in part mediated through circadian transcriptional network. Under constant darkness, treatment of d-alanine normalized the circadian cycle of behaviour and kidney gene expressions. CONCLUSIONS: d-Alanine induces gluconeogenesis in the kidney and adjusts the period of the circadian clock. Normalization of circadian cycle by d-alanine may provide the therapeutic options for life style-related diseases and shift workers.
  • Yasuyuki Akasaka, Shun Hasei, Yukino Ohata, Machi Kanna, Yusuke Nakatsu, Hideyuki Sakoda, Midori Fujishiro, Akifumi Kushiyama, Hiraku Ono, Akio Matsubara, Nobuyuki Hinata, Tomoichiro Asano, Takeshi Yamamotoya
    International journal of molecular sciences 24(21) 2023年11月6日  
    Citrus hassaku extract reportedly activates AMPK. Because this extract contains an abundance of auraptene, we investigated whether pure auraptene activates AMPK and inhibits proliferation using prostate cancer cell lines. Indeed, auraptene inhibited the proliferation and migration of LNCaP cells and induced phosphorylation of AMPK or its downstream ACC in LNCaP, PC3, and HEK-293 cells, but not in DU145 cells not expressing LKB1. In addition, the mTOR-S6K pathway, located downstream from activated AMPK, was also markedly suppressed by auraptene treatment. Importantly, it was shown that auraptene reduced androgen receptor (AR) and prostate-specific antigen (PSA) expressions at both the protein and the mRNA level. This auraptene-induced downregulation of PSA was partially but significantly reversed by treatment with AMPK siRNA or the AMPK inhibitor compound C, suggesting AMPK activation to, at least partially, be causative. Finally, in DU145 cells lacking the LKB1 gene, exogenously induced LKB1 expression restored AMPK phosphorylation by auraptene, indicating the essential role of LKB1. In summary, auraptene is a potent AMPK activator that acts by elevating the AMP/ATP ratio, thereby potentially suppressing prostate cancer progression, via at least three molecular mechanisms, including suppression of the mTOR-S6K pathway, reduced lipid synthesis, and AR downregulation caused by AMPK activation.

MISC

 89

書籍等出版物

 1

講演・口頭発表等

 30

共同研究・競争的資金等の研究課題

 9