論文

基本情報

氏名 近久 幸子
氏名(カナ) チカヒサ サチコ
氏名(英語) Chikahisa Sachiko
所属 獣医学部 獣医学科
職名 准教授
researchmap研究者コード B000322773
researchmap機関 岡山理科大学

題名

Changes in behavior and gene expression induced by caloric restriction in C57BL/6 mice

単著・共著の別

 

著者

Yuta Yamamoto
Toshihito Tanahashi
Tomoko Kawai
Sachiko Chikahisa
Sakurako Katsuura
Kensei Nishida
Shigetada Teshima-Kondo
Hiroyoshi Sei
Kazuhito Rokutan

概要

Yamamoto Y, Tanahashi T, Kawai T, Chikahisa S, Katsuura S, Nishida K, Teshima-Kondo S, Sei H, Rokutan K. Changes in behavior and gene expression induced by caloric restriction in C57BL/6 mice. Physiol Genomics 39: 227-235, 2009. First published September 8, 2009; doi: 10.1152/physiolgenomics.00082.2009.-Caloric restriction (CR) is an effective method for prevention of age-associated diseases as well as overweight and obesity; however, there is controversy regarding the effects of dieting regimens on behavior. In this study, we investigated two different dieting regimens: repeated fasting and refeeding (RFR) and daily feeding of half the amount of food consumed by RFR mice (CR). CR and RFR mice had an approximate 20% reduction in food intake compared with control mice. Open field, light-dark transition, elevated plus maze, and forced swimming tests indicated that CR, but not RFR, reduced anxiety-and depressive-like behaviors, with a reduction peak on day 8. Using a mouse whole genome microarray, we analyzed gene expression in the prefrontal cortex, amygdala, and hypothalamus. In addition to the CR-responsive genes commonly modified by RFR and CR, each regimen differentially changed the expression of distinct genes in each region. The most profound change was observed in the amygdalas of CR mice: 884 genes were specifically upregulated. Ingenuity pathway analysis revealed that these 884 genes significantly modified nine canonical pathways in the amygdala. alpha-Adrenergic and dopamine receptor signalings were the two top-scoring pathways. Quantitative RT-PCR confirmed the upregulation of six genes in these pathways. Western blotting confirmed that CR specifically increased dopamine- and cAMP-regulated phosphoprotein (Darpp-32), a key regulator of dopamine receptor signaling, in the amygdala. Our results suggest that CR may change behavior through altered gene expression.

発表雑誌等の名称

PHYSIOLOGICAL GENOMICS

出版者

AMER PHYSIOLOGICAL SOC

39

3

開始ページ

227

終了ページ

235

発行又は発表の年月

2009-11

査読の有無

有り

招待の有無

無し

記述言語

英語

掲載種別

研究論文(学術雑誌)

ISSN

 

ID:DOI

10.1152/physiolgenomics.00082.2009

ID:NAID(CiNiiのID)

 

ID:PMID

 

JGlobalID

 

arXiv ID

 

ORCIDのPut Code

 

DBLP ID