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Citations to this article

Investigating long noncoding RNAs using animal models
Michael Feyder, Loyal A. Goff
Michael Feyder, Loyal A. Goff
Published August 1, 2016
Citation Information: J Clin Invest. 2016;126(8):2783-2791. https://doi.org/10.1172/JCI84422.
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Review Article has an altmetric score of 7

Investigating long noncoding RNAs using animal models

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Abstract

The number of long noncoding RNAs (lncRNAs) has grown rapidly; however, our understanding of their function remains limited. Although cultured cells have facilitated investigations of lncRNA function at the molecular level, the use of animal models provides a rich context in which to investigate the phenotypic impact of these molecules. Promising initial studies using animal models demonstrated that lncRNAs influence a diverse number of phenotypes, ranging from subtle dysmorphia to viability. Here, we highlight the diversity of animal models and their unique advantages, discuss the use of animal models to profile lncRNA expression, evaluate experimental strategies to manipulate lncRNA function in vivo, and review the phenotypes attributable to lncRNAs. Despite a limited number of studies leveraging animal models, lncRNAs are already recognized as a notable class of molecules with important implications for health and disease.

Authors

Michael Feyder, Loyal A. Goff

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Total citations by year

Year: 2024 2023 2022 2021 2020 2019 2017 Total
Citations: 6 1 3 1 3 4 2 20
Citation information
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Citations to this article (20)

Title and authors Publication Year
Rare germline disorders implicate long non-coding RNAs disrupted by chromosomal structural rearrangements
Andersen RE, Alkuraya IF, Ajeesh A, Sakamoto T, Mena EL, Amr SS, Romi H, Kenna MA, Robson CD, Wilch ES, Nalbandian K, Piña-Aguilar R, Walsh CA, Morton CC
2024
Role of long noncoding RNAs in diabetes-associated peripheral arterial disease.
Tapia A, Liu X, Malhi NK, Yuan D, Chen M, Southerland KW, Luo Y, Chen ZB
Cardiovascular Diabetology 2024
The Potential Links between lncRNAs and Drug Tolerance in Lung Adenocarcinoma.
Davis WJH, Drummond CJ, Diermeier S, Reid G
Genes & development 2024
Chromosomal structural rearrangements implicate long non-coding RNAs in rare germline disorders.
Andersen RE, Alkuraya IF, Ajeesh A, Sakamoto T, Mena EL, Amr SS, Romi H, Kenna MA, Robson CD, Wilch ES, Nalbandian K, Piña-Aguilar R, Walsh CA, Morton CC
Human Genetics 2024
SCAR-6 elncRNA locus epigenetically regulates PROZ and modulates coagulation and vascular function.
Ranjan G, Sehgal P, Scaria V, Sivasubbu S
EMBO reports 2024
Advantages of the zebrafish tumor xenograft model: the evaluation of efficacy in cancer therapy and the application to the study of lncRNAs
Hu C, Sun L, Chen J, Lyu Z, Yuan C, Jiang X
Frontiers in Immunology 2024
Knocking Down Gm16685 Decreases Liver Granuloma in Murine Schistosomiasis Japonica.
Zhao R, Tang X, Lin H, Xing C, Xu N, Dai B, Wang P, Shao W, Liu M, Shen J, Deng S, Ren C
Microorganisms 2023
Biophysical characterisation of human LincRNA-p21 sense and antisense Alu inverted repeats
D\u2019Souza MH, Mrozowich T, Badmalia MD, Geeraert M, Frederickson A, Henrickson A, Demeler B, Wolfinger MT, Patel TR
Nucleic Acids Research 2022
Murine Falcor/LL35 lncRNA Contributes to Glucose and Lipid Metabolism In Vitro and In Vivo
Shcherbinina E, Abakumova T, Bobrovskiy D, Kurochkin I, Deinichenko K, Stekolshchikova E, Anikanov N, Ziganshin R, Melnikov P, Khrameeva E, Logacheva M, Zatsepin T, Sergeeva O
Biomedicines 2022
Host-Directed Targeting of LincRNA-MIR99AHG Suppresses Intracellular Growth of Mycobacterium tuberculosis
Gcanga L, Tamgue O, Ozturk M, Pillay S, Jacobs R, Chia JE, Mbandi SK, Davids M, Dheda K, Schmeier S, Alam T, Roy S, Suzuki H, Brombacher F, Guler R
Nucleic Acid Therapeutics (Formerly Oligonucleotides) 2022
The lncRNA Caren antagonizes heart failure by inactivating DNA damage response and activating mitochondrial biogenesis
M Sato, T Kadomatsu, K Miyata, JS Warren, Z Tian, S Zhu, H Horiguchi, A Makaju, A Bakhtina, J Morinaga, T Sugizaki, K Hirashima, K Yoshinobu, M Imasaka, M Araki, Y Komohara, T Wakayama, S Nakagawa, S Franklin, K Node, K Araki, Y Oike
Nature Communications 2021
Long noncoding RNA SAM promotes myoblast proliferation through stabilizing Sugt1 and facilitating kinetochore assembly
Y Li, J Yuan, F Chen, S Zhang, Y Zhao, X Chen, L Lu, L Zhou, CY Chu, H Sun, H Wang
Nature Communications 2020
The role of long noncoding RNAs in hepatocellular carcinoma
Z Huang, JK Zhou, Y Peng, W He, C Huang
Molecular Cancer 2020
LncRNAs in adaptive immunity: role in physiological and pathological conditions
PF Zeni, M Mraz
RNA biology 2020
Modulation of Angiogenic Processes by the Human Gammaherpesviruses, Epstein–Barr Virus and Kaposi’s Sarcoma-Associated Herpesvirus
R Rivera-Soto, B Damania
Frontiers in microbiology 2019
Insights into the Functions of LncRNAs in Drosophila
K Li, Y Tian, Y Yuan, X Fan, M Yang, Z He, D Yang
International journal of molecular sciences 2019
Regulation of CHD2 expression by the Chaserr long noncoding RNA gene is essential for viability
A Rom, L Melamed, N Gil, MJ Goldrich, R Kadir, M Golan, I Biton, RB Perry, I Ulitsky
Nature Communications 2019
The Firre locus produces a trans-acting RNA molecule that functions in hematopoiesis
JP Lewandowski, JC Lee, T Hwang, H Sunwoo, JM Goldstein, AF Groff, NP Chang, W Mallard, A Williams, J Henao-Meija, RA Flavell, JT Lee, C Gerhardinger, AJ Wagers, JL Rinn
Nature Communications 2019
The NANCI–Nkx2.1 gene duplex buffers Nkx2.1 expression to maintain lung development and homeostasis
MJ Herriges, DJ Tischfield, Z Cui, MP Morley, Y Han, A Babu, S Li, MM Lu, I Cendan, BA Garcia, SA Anderson, EE Morrisey
Genes & development 2017
Magnetic Field-Activated Sensing of mRNA in Living Cells
SF Bakshi, N Guz, A Zakharchenko, H Deng, AV Tumanov, CD Woodworth, S Minko, DM Kolpashchikov, E Katz
Journal of the American Chemical Society 2017

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