Noncoding RNAs in Alzheimer's disease

被引:178
作者
Idda, M. Laura [1 ]
Munk, Rachel [1 ]
Abdelmohsen, Kotb [1 ]
Gorospe, Myriam [1 ]
机构
[1] NIA, Lab Genet & Genom, Intramural Res Program, NIH, 251 Bayview Blvd, Baltimore, MD 21224 USA
基金
美国国家卫生研究院;
关键词
amyloid plaques; circRNA; lncRNA; miRNA; neurodegeneration; neurofibrillary tangles; noncoding RNA; posttranscriptional gene regulation; AMYLOID PRECURSOR PROTEIN; POSTTRANSCRIPTIONAL GENE-REGULATION; CHRONIC BRAIN HYPOPERFUSION; CLEAVING ENZYME 1; CIRCULAR RNAS; IN-VIVO; TAU PHOSPHORYLATION; SYNAPTIC PLASTICITY; NEUROTROPHIC FACTOR; BETA METABOLISM;
D O I
10.1002/wrna.1463
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Alzheimer's disease (AD) is a progressive neurodegenerative disorder and the main cause of dementia among the elderly worldwide. Despite intense efforts to develop drugs for preventing and treating AD, no effective therapies are available as yet, posing a growing burden at the personal, medical, and socioeconomic levels. AD is characterized by the production and aggregation of amyloid beta (A beta) peptides derived from amyloid precursor protein (APP), the presence of hyperphosphorylated microtubule-associated protein Tau (MAPT), and chronic inflammation leading to neuronal loss. A beta accumulation and hyperphosphorylated Tau are responsible for the main histopathological features of AD, A beta plaques, and neurofibrillary tangles (NFTs), respectively. However, the full spectrum of molecular factors that contribute to AD pathogenesis is not known. Noncoding (nc)RNAs, including microRNAs (miRNAs), long noncoding RNAs (lncRNAs), and circular RNAs (circRNAs), regulate gene expression at the transcriptional and posttranscriptional levels in various diseases, serving as biomarkers and potential therapeutic targets. There is rising recognition that ncRNAs have been implicated in both the onset and pathogenesis of AD. Here, we review the ncRNAs implicated posttranscriptionally in the main AD pathways and discuss the growing interest in targeting regulatory ncRNAs therapeutically to combat AD pathology. This article is categorized under: RNA in Disease and Development > RNA in Disease
引用
收藏
页数:13
相关论文
共 152 条
[61]   Long Noncoding RNAs and RNA-Binding Proteins in Oxidative Stress, Cellular Senescence, and Age-Related Diseases [J].
Kim, Chongtae ;
Kang, Donghee ;
Lee, Eun Kyung ;
Lee, Jae-Seon .
OXIDATIVE MEDICINE AND CELLULAR LONGEVITY, 2017, 2017
[62]   microRNA-33 Regulates ApoE Lipidation and Amyloid-β Metabolism in the Brain [J].
Kim, Jaekwang ;
Yoon, Hyejin ;
Horie, Takahiro ;
Burchett, Jack M. ;
Restivo, Jessica L. ;
Rotllan, Noemi ;
Ramirez, Cristina M. ;
Verghese, Philip B. ;
Ihara, Masafumi ;
Hoe, Hyang-Sook ;
Esau, Christine ;
Fernandez-Hernando, Carlos ;
Holtzman, David M. ;
Cirrito, John R. ;
Ono, Koh ;
Kim, Jungsu .
JOURNAL OF NEUROSCIENCE, 2015, 35 (44) :14717-14726
[63]   Recent Advances in Unconventional Lithography for Challenging 3D Hierarchical Structures and Their Applications [J].
Kim, Jong Uk ;
Lee, Sori ;
Kim, Tae-il .
JOURNAL OF NANOMATERIALS, 2016, 2016
[64]   Biogenesis of small RNAs in animals [J].
Kim, V. Narry ;
Han, Jinju ;
Siomi, Mikiko C. .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2009, 10 (02) :126-139
[65]   Re-evaluation of the roles of DROSHA, Exportin 5, and DICER in microRNA biogenesis [J].
Kim, Young-Kook ;
Kim, Boseon ;
Kim, V. Narry .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2016, 113 (13) :E1881-E1889
[66]   The structure and function of Alzheimer's gamma secretase enzyme complex [J].
Krishnaswamy, Sudarsan ;
Verdile, Giuseppe ;
Groth, David ;
Kanyenda, Limbikani ;
Martins, Ralph N. .
CRITICAL REVIEWS IN CLINICAL LABORATORY SCIENCES, 2009, 46 (5-6) :282-301
[67]   Circular RNAs are miRNA sponges and can be used as a new class of biomarker [J].
Kulcheski, Franceli Rodrigues ;
Christoff, Ana Paula ;
Margis, Rogerio .
JOURNAL OF BIOTECHNOLOGY, 2016, 238 :42-51
[68]   Long noncoding RNAs: lincs between human health and disease [J].
Kwok, Zhi Hao ;
Tay, Yvonne .
BIOCHEMICAL SOCIETY TRANSACTIONS, 2017, 45 :805-812
[69]   Meta-analysis of 74,046 individuals identifies 11 new susceptibility loci for Alzheimer's disease [J].
Lambert, Jean-Charles ;
Ibrahim-Verbaas, Carla A. ;
Harold, Denise ;
Naj, Adam C. ;
Sims, Rebecca ;
Bellenguez, Celine ;
Jun, Gyungah ;
DeStefano, Anita L. ;
Bis, Joshua C. ;
Beecham, Gary W. ;
Grenier-Boley, Benjamin ;
Russo, Giancarlo ;
Thornton-Wells, Tricia A. ;
Jones, Nicola ;
Smith, Albert V. ;
Chouraki, Vincent ;
Thomas, Charlene ;
Ikram, M. Arfan ;
Zelenika, Diana ;
Vardarajan, Badri N. ;
Kamatani, Yoichiro ;
Lin, Chiao-Feng ;
Gerrish, Amy ;
Schmidt, Helena ;
Kunkle, Brian ;
Dunstan, Melanie L. ;
Ruiz, Agustin ;
Bihoreau, Marie-Therese ;
Choi, Seung-Hoan ;
Reitz, Christiane ;
Pasquier, Florence ;
Hollingworth, Paul ;
Ramirez, Alfredo ;
Hanon, Olivier ;
Fitzpatrick, Annette L. ;
Buxbaum, Joseph D. ;
Campion, Dominique ;
Crane, Paul K. ;
Baldwin, Clinton ;
Becker, Tim ;
Gudnason, Vilmundur ;
Cruchaga, Carlos ;
Craig, David ;
Amin, Najaf ;
Berr, Claudine ;
Lopez, Oscar L. ;
De Jager, Philip L. ;
Deramecourt, Vincent ;
Johnston, Janet A. ;
Evans, Denis .
NATURE GENETICS, 2013, 45 (12) :1452-U206
[70]   ApoE, ApoE Receptors, and the Synapse in Alzheimer's Disease [J].
Lane-Donovan, Courtney ;
Herz, Joachim .
TRENDS IN ENDOCRINOLOGY AND METABOLISM, 2017, 28 (04) :273-284