Adiponectin regulates the circadian rhythm of glucose and lipid metabolism

被引:15
|
作者
Wada, Taira [1 ]
Yamamoto, Yukiko [1 ]
Takasugi, Yukiko [1 ]
Ishii, Hirotake [1 ]
Uchiyama, Taketo [2 ]
Saitoh, Kaori [3 ]
Suzuki, Masahiro [3 ]
Uchiyama, Makoto [3 ,4 ]
Yoshitane, Hikari [5 ]
Fukada, Yoshitaka [5 ]
Shimba, Shigeki [1 ]
机构
[1] Nihon Univ, Sch Pharm, Lab Hlth Sci, Funabshi, Chiba, Japan
[2] Nihon Univ, Sch Pharm, Lab Organ Chem, Funabshi, Chiba, Japan
[3] Nihon Univ, Dept Psychiat, Sch Med, Itabashi Ku, Tokyo, Japan
[4] Tokyo Adachi Hosp, Tokyo, Japan
[5] Univ Tokyo, Sch Sci, Dept Biol Sci, Bunkyo Ku, Tokyo, Japan
关键词
adiponectin; circadian rhythm; liver; metabolism; VLDL; insulin; ADIPOSE-SPECIFIC PROTEIN; HIGH-FAT DIET; GENE-EXPRESSION; SUPRACHIASMATIC NUCLEUS; DIURNAL CHANGES; FOOD-INTAKE; CLOCK; LEPTIN; INSULIN; DYNAMICS;
D O I
10.1530/JOE-22-0006
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Adiponectin is a cytokine secreted from adipocytes and regulates metabolism. Although serum adiponectin levels show diurnal variations, it is not clear if the effects of adiponectin are time-dependent. Therefore, this study conducted locomotor activity analyses and various metabolic studies using the adiponectin knockout (APN (-/-)) and the APN (+/+) mice to understand whether adiponectin regulates the circadian rhythm of glucose and lipid metabolism. We observed that the adiponectin gene deficiency does not affect the rhythmicity of core circadian clock genes expression in several peripheral tissues. In contrast, the adiponectin gene deficiency alters the circadian rhythms of liver and serum lipid levels and results in the loss of the time dependency of very-low-density lipoprotein-triglyceride secretion from the liver. In addition, the whole-body glucose tolerance of the APN (-/-) mice was normal at CT10 but reduced at CT22, compared to the APN (+/+) mice. The decreased glucose tolerance at CT22 was associated with insulin hyposecretion in vivo. In contrast, the gluconeogenesis activity was higher in the APN (-/-) mice than in the APN (+/+) mice throughout the day. These results indicate that adiponectin regulates part of the circadian rhythm of metabolism in the liver.
引用
收藏
页码:121 / 133
页数:13
相关论文
共 50 条
  • [41] Regulation of hepatic lipid metabolism by adiponectin
    Lee, Minwoo
    Yoon, Young-Sil
    Koo, Seung-Hoi
    DIABETES, 2008, 57 : A373 - A373
  • [42] Adiponectin and lipid metabolism in skeletal muscle
    Lee, Bonggi
    Shao, Jianhua
    ACTA PHARMACEUTICA SINICA B, 2012, 2 (04) : 335 - 340
  • [43] Circadian control of glucose metabolism
    Kalsbeek, Andries
    la Fleur, Susanne
    Fliers, Eric
    MOLECULAR METABOLISM, 2014, 3 (04): : 372 - 383
  • [44] Circadian rhythm disturbances involved in ozone-induced glucose metabolism disorder in mouse liver
    Zhang, Yaru
    Yan, Zhipeng
    Nan, Nan
    Qin, Guohua
    Sang, Nan
    SCIENCE OF THE TOTAL ENVIRONMENT, 2023, 905
  • [45] Gene expression of adiponectin and adiponectin receptor 1 in type 2 diabetic rats and the relationship with the parameters of glucose and lipid metabolism
    Yao Hui
    Ling Hanhua
    Wang Hongwei
    Zhang Longjiang
    Huang Xiaoyan
    Xia Zhi
    Current Medical Science, 2005, 25 (3) : 285 - 288
  • [46] Gene Expression of Adiponectin and Adiponectin Receptor 1 in Type 2 Diabetic Rats and the Relationship with the Parameters of Glucose and Lipid Metabolism
    姚辉
    林汉华
    王宏伟
    张龙江
    黄晓燕
    夏治
    Current Medical Science, 2005, (03) : 285 - 288
  • [47] CIRCADIAN AND SEASONAL RHYTHM OF POTASSIUM METABOLISM OF HUMANS
    REINBERG, A
    COEUR ET MEDECINE INTERNE, 1977, 16 : 21 - 33
  • [48] Rhythmic glucose metabolism regulates the redox circadian clockwork in human red blood cells
    Ch, Ratnasekhar
    Rey, Guillaume
    Ray, Sandipan
    Jha, Pawan K.
    Driscoll, Paul C.
    Dos Santos, Mariana Silva
    Malik, Dania M.
    Lach, Radoslaw
    Weljie, Aalim M.
    MacRae, James I.
    Valekunja, Utham K.
    Reddy, Akhilesh B.
    NATURE COMMUNICATIONS, 2021, 12 (01)
  • [49] Rhythmic glucose metabolism regulates the redox circadian clockwork in human red blood cells
    Ratnasekhar Ch
    Guillaume Rey
    Sandipan Ray
    Pawan K. Jha
    Paul C. Driscoll
    Mariana Silva Dos Santos
    Dania M. Malik
    Radoslaw Lach
    Aalim M. Weljie
    James I. MacRae
    Utham K. Valekunja
    Akhilesh B. Reddy
    Nature Communications, 12
  • [50] Circadian Clock Component BMAL1 in the Paraventricular Nucleus Regulates Glucose Metabolism
    Nakata, Masanori
    Kumari, Parmila
    Kita, Rika
    Katsui, Nanako
    Takeuchi, Yuriko
    Kawaguchi, Tomoki
    Yamazaki, Toshiya
    Zhang, Boyang
    Shimba, Shigeki
    Yada, Toshihiko
    NUTRIENTS, 2021, 13 (12)