A Novel Alternative Splicing Mechanism That Enhances Human 5-HT1A Receptor RNA Stability Is Altered in Major Depression

被引:28
作者
Le Francois, Brice [1 ,2 ,3 ]
Zhang, Lei [1 ,2 ]
Mahajan, Gouri J. [4 ]
Stockmeier, Craig A. [4 ]
Friedman, Eitan [1 ,2 ]
Albert, Paul R. [3 ]
机构
[1] CUNY, Sch Med, Dept Mol Cellular & Biomed Sci, PhD Program Biochem, New York, NY USA
[2] CUNY, Sch Med, Dept Mol Cellular & Biomed Sci, PhD Program Biol, New York, NY USA
[3] Ottawa Hosp Res Inst Neurosci, UOttawa Brain & Mind Res Inst, Dept Cellular & Mol Med, Ottawa, ON K1H 8M5, Canada
[4] Univ Mississippi, Med Ctr, Dept Psychiat & Human Behav, Jackson, MS 39216 USA
关键词
5-HT1A receptor; alternative splicing; major depression; RNA splice factors; RNA stability; serotonin; SEROTONIN-1A AUTORECEPTOR BINDING; GENE-EXPRESSION; POLYMORPHISM; REPRESSION; DIFFERENTIATION; CLONING; DEAF-1; STRESS;
D O I
10.1523/JNEUROSCI.0902-18.2018
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The serotonin-1A (5-HT1A) receptor is a key regulator of serotonergic activity and is implicated in mood and emotion. However, its post-transcriptional regulation has never been studied in humans. In the present study, we show that the "intronless" human 5-HT1A gene (HTR1A) is alternatively spliced in its 3'-UTR, yielding two novel splice variants. These variants lack a similar to 1.6 kb intron, which contains an microRNA-135 (miR135) target site. Unlike the human HTR1A, the mouse HTR1A lacks the splice donor/accepter sites. Thus, in the mouse HTR1A, splicing was not detected. The two spliced mRNAs are extremely stable, are resistant to miR135-induced down-regulation, and have greater translational output than the unspliced variant. Moreover, alternative HTR1A RNA splicing is oppositely regulated by the splice factors PTBP1 and nSR100, which inhibit or enhance its splicing, respectively. In postmortem human brain tissue from both sexes, HTR1A mRNA splicing was prevalent and region-specific. Unspliced HTR1A was expressed more strongly in the hippocampus and midbrain versus the prefrontal cortex (PFC), and correlated with reduced levels of nSR100. Importantly, HTR1A RNA splicing and nSR100 levels were reduced in the PFC of individuals with major depression compared with controls. Our unexpected findings uncover a novel mechanism to regulate HTR1A gene expression through alternative splicing of microRNA sites. Altered levels of splice factors could contribute to changes in regional and depression-related gene expression through alternative splicing.
引用
收藏
页码:8200 / 8210
页数:11
相关论文
共 51 条
[21]   A Highly Conserved Program of Neuronal Microexons Is Misregulated in Autistic Brains [J].
Irimia, Manuel ;
Weatheritt, Robert J. ;
Ellis, Jonathan D. ;
Parikshak, Neelroop N. ;
Gonatopoulos-Pournatzis, Thomas ;
Babor, Mariana ;
Quesnel-Vallieres, Mathieu ;
Tapial, Javier ;
Raj, Bushra ;
O'Hanlon, Dave ;
Barrios-Rodiles, Miriam ;
Sternberg, Michael J. E. ;
Cordes, Sabine P. ;
Roth, Frederick P. ;
Wrana, Jeffrey L. ;
Geschwind, Daniel H. ;
Blencowe, Benjamin J. .
CELL, 2014, 159 (07) :1511-1523
[22]   MicroRNA 135 Is Essential for Chronic Stress Resiliency, Antidepressant Efficacy, and Intact Serotonergic Activity [J].
Issler, Orna ;
Haramati, Sharon ;
Paul, Evan D. ;
Maeno, Hiroshi ;
Navon, Inbal ;
Zwang, Rayya ;
Gil, Shosh ;
Mayberg, Helen S. ;
Dunlop, Boadie W. ;
Menke, Andreas ;
Awatramani, Rajeshwar ;
Binder, Elisabeth B. ;
Deneris, Evan S. ;
Lowry, Christopher A. ;
Chen, Alon .
NEURON, 2014, 83 (02) :344-360
[23]   Spatio-temporal transcriptome of the human brain [J].
Kang, Hyo Jung ;
Kawasawa, Yuka Imamura ;
Cheng, Feng ;
Zhu, Ying ;
Xu, Xuming ;
Li, Mingfeng ;
Sousa, Andre M. M. ;
Pletikos, Mihovil ;
Meyer, Kyle A. ;
Sedmak, Goran ;
Guennel, Tobias ;
Shin, Yurae ;
Johnson, Matthew B. ;
Krsnik, Zeljka ;
Mayer, Simone ;
Fertuzinhos, Sofia ;
Umlauf, Sheila ;
Lisgo, Steven N. ;
Vortmeyer, Alexander ;
Weinberger, Daniel R. ;
Mane, Shrikant ;
Hyde, Thomas M. ;
Huttner, Anita ;
Reimers, Mark ;
Kleinman, Joel E. ;
Sestan, Nenad .
NATURE, 2011, 478 (7370) :483-489
[24]   The influence of the rs6295 gene polymorphism on serotonin-1A receptor distribution investigated with PET in patients with major depression applying machine learning [J].
Kautzky, A. ;
James, G. M. ;
Philippe, C. ;
Baldinger-Melich, P. ;
Kraus, C. ;
Kranz, G. S. ;
Vanicek, T. ;
Gryglewski, G. ;
Wadsak, W. ;
Mitterhauser, M. ;
Rujescu, D. ;
Kasper, S. ;
Lanzenberger, R. .
TRANSLATIONAL PSYCHIATRY, 2017, 7 :e1150-e1150
[25]   The serotonin 1A receptor gene confer susceptibility to mood disorders: results from an extended meta-analysis of patients with major depression and bipolar disorder [J].
Kishi, Taro ;
Yoshimura, Reiji ;
Fukuo, Yasuhisa ;
Okochi, Tomo ;
Matsunaga, Shinji ;
Umene-Nakano, Wakako ;
Nakamura, Jun ;
Serretti, Alessandro ;
Correll, Christoph U. ;
Kane, John M. ;
Iwata, Nakao .
EUROPEAN ARCHIVES OF PSYCHIATRY AND CLINICAL NEUROSCIENCE, 2013, 263 (02) :105-118
[26]   Transcriptional regulation at a HTR1A polymorphism associated with mental illness [J].
Le Francois, Brice ;
Czesak, Margaret ;
Steubl, Dominik ;
Albert, Paul R. .
NEUROPHARMACOLOGY, 2008, 55 (06) :977-985
[27]   Mechanisms and Regulation of Alternative Pre-mRNA Splicing [J].
Lee, Yeon ;
Rio, Donald C. .
ANNUAL REVIEW OF BIOCHEMISTRY, VOL 84, 2015, 84 :291-323
[28]   Association of the C(-1019)G 5-HT1A functional promoter polymorphism with antidepressant response [J].
Lemonde, S ;
Du, LS ;
Bakish, D ;
Hrdina, P ;
Albert, PR .
INTERNATIONAL JOURNAL OF NEUROPSYCHOPHARMACOLOGY, 2004, 7 (04) :501-506
[29]  
Lemonde S, 2003, J NEUROSCI, V23, P8788
[30]   Analysis of relative gene expression data using real-time quantitative PCR and the 2-ΔΔCT method [J].
Livak, KJ ;
Schmittgen, TD .
METHODS, 2001, 25 (04) :402-408