Distribution Analysis of Deacetylase SIRT1 in Rodent and Human Nervous Systems

被引:96
|
作者
Zakhary, Sherry M. [1 ]
Ayubcha, Diana [1 ]
Dileo, Jeffery N. [1 ]
Jose, Riya [1 ]
Leheste, Joerg R. [1 ]
Horowitz, Judith M. [2 ]
Torres, German [1 ]
机构
[1] New York Inst Technol, New York Coll Osteopath Med, Dept Neurosci & Histol, Old Westbury, NY 11568 USA
[2] Medaille Coll, Clin Neurosci Lab, Buffalo, NY USA
关键词
basal ganglia; hippocampus; parvalbumin; prefrontal cortex; tyrosine hydroxylase; CALORIE RESTRICTION; PARKINSONS-DISEASE; MODELS; NEURODEGENERATION; SCHIZOPHRENIA; TRANSCRIPTION; PGC-1-ALPHA; SIRTUINS;
D O I
10.1002/ar.21116
中图分类号
R602 [外科病理学、解剖学]; R32 [人体形态学];
学科分类号
100101 ;
摘要
Sirtuins function with other biogenic molecules to promote adaptation to caloric restriction in a broad spectrum of eukaryotic species. Sirtuin pathways also converge in the mammalian brain where they appear to protect neurons from nutrient stress. However, few anatomical studies on sirtuins (e.g., SIRT1) are available, particularly those detailing the spatial distribution and subcellular localization pattern of SIRT1 in the brain parenchyma Here, we report the characterization of a panel of SIRT1-specific antibodies within rodent (i.e, rat and mouse) and human central nervous systems Immunocytochemical and Western blot analyses indicate that the subcellular localization of SIRT1 is predominantly nuclear throughout the rodent brain and spinal cord. A similar subcellular distribution pattern of SIRT1 was detected in human central nervous system material SIRT1 is ubiquitously present in areas of the brain especially susceptible to age-related neurodegenerative states (e.g., the prefrontal cortex, hippocampus and basal ganglia). Further, we show no apparent species-specific differences in the subcellular localization pattern of rodent versus human SIRT1 Finally, we identify the chemical phenotype of SIRT1-containing neurons in a number of brain sites that are strongly compromised by aging. These data provide additional and important anatomical findings for the role of SIRT1 in the mammalian brain and suggest that SIRT1 pathways are broadly distributed in neurons most susceptible to senescence injury Activating endogenous sirtuin pathways may, therefore, offer a therapeutic approach to delay and/or treat human age-related diseases. Anat Rec, 293.1024-1032, 2010. (C) 2010 Wiley-Liss, Inc.
引用
收藏
页码:1024 / 1032
页数:9
相关论文
共 50 条
  • [21] Molecular functions of histone deacetylase SIRT1 in neural differentiation
    Hisahara, Shin
    Chiba, Susumu
    Matsumoto, Hiroyuki
    Shimohama, Shun
    Horio, Yoshiyuki
    JOURNAL OF PHARMACOLOGICAL SCIENCES, 2007, 103 : 103P - 103P
  • [22] Histone/protein deacetylase SIRT1 is an anticancer therapeutic target
    Hwang, Bor-Jang
    Madabushi, Amrita
    Jin, Jin
    Lin, Shiou-Yuh S.
    Lu, A-Lien
    AMERICAN JOURNAL OF CANCER RESEARCH, 2014, 4 (03): : 211 - 221
  • [23] SIRT1 ISGylation accelerates tumor progression by unleashing SIRT1 from the inactive state to promote its deacetylase activity
    Ji An Kang
    Yoon Jung Kim
    Kyu Yun Jang
    Hye Won Moon
    Haeseung Lee
    Seonjeong Lee
    Hyun Kyu Song
    Sang Woo Cho
    Yoon Sun Yoo
    Hye Gyeong Han
    Min-Ju Kim
    Myoung Ja Chung
    Cheol Yong Choi
    Cheolju Lee
    Chaeuk Chung
    Gang Min Hur
    You-Sun Kim
    Young Joo Jeon
    Experimental & Molecular Medicine, 2024, 56 : 656 - 673
  • [24] SIRT1 ISGylation accelerates tumor progression by unleashing SIRT1 from the inactive state to promote its deacetylase activity
    Kang, Ji An
    Kim, Yoon Jung
    Jang, Kyu Yun
    Moon, Hye Won
    Lee, Haeseung
    Lee, Seonjeong
    Song, Hyun Kyu
    Cho, Sang Woo
    Yoo, Yoon Sun
    Han, Hye Gyeong
    Kim, Min-Ju
    Chung, Myoung Ja
    Choi, Cheol Yong
    Lee, Cheolju
    Chung, Chaeuk
    Hur, Gang Min
    Kim, You-Sun
    Jeon, Young Joo
    EXPERIMENTAL AND MOLECULAR MEDICINE, 2024, 56 (03): : 656 - 673
  • [25] Transcriptional activation of histone deacetylase SIRT1 by Notch1 signal
    Horio, Yoshiyuki
    Iguchi, Umefumi
    Ninomiya, Takafumi
    Tatsumi, Haruyuki
    Hisahara, Shin
    Tanno, Masaya
    Takemura, Haruo
    JOURNAL OF PHARMACOLOGICAL SCIENCES, 2007, 103 : 105P - 105P
  • [26] The SIRT1 deacetylase protects mice against the symptoms of metabolic syndrome
    Caron, Annabelle Z.
    He, Xiaohong
    Mottawea, Walid
    Seifert, Erin L.
    Jardine, Karen
    Dewar-Darch, Danielle
    Cron, Greg O.
    Harper, Mary-Ellen
    Stintzi, Alain
    McBurney, Michael W.
    FASEB JOURNAL, 2014, 28 (03): : 1306 - 1316
  • [27] The SIRT1 Deacetylase Suppresses Intestinal Tumorigenesis and Colon Cancer Growth
    Firestein, Ron
    Blander, Gil
    Michan, Shaday
    Oberdoerffer, Philipp
    Ogino, Shuji
    Campbell, Jennifer
    Bhimavarapu, Anupama
    Luikenhuis, Sandra
    de Cabo, Rafael
    Fuchs, Charles
    Hahn, William C.
    Guarente, Leonard P.
    Sinclair, David A.
    PLOS ONE, 2008, 3 (04):
  • [28] Molecular imaging of NAD plus -dependent deacetylase SIRT1 in the brain
    Xu, Yulong
    Chen, Zude
    Wey, Hsiao-Ying
    Liang, Yingxia
    Tanzi, Rudolph
    Zhang, Can
    Wang, Changning
    JOURNAL OF NUCLEAR MEDICINE, 2023, 64
  • [29] Molecular Modelling of Resveratrol Derivatives with SIRT1 for the Stimulation of Deacetylase Activity
    Zamani, Mozhdeh
    Mokarram, Pooneh
    Jamshidi, Mehdi
    Siri, Morvarid
    Ghasemi, Hadi
    CURRENT COMPUTER-AIDED DRUG DESIGN, 2024, 20 (06) : 943 - 954
  • [30] The Critical Role of the Class III Histone Deacetylase SIRT1 in Cancer
    Liu, Tao
    Liu, Pei Y.
    Marshall, Glenn M.
    CANCER RESEARCH, 2009, 69 (05) : 1702 - 1705