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1.
Front Endocrinol (Lausanne) ; 13: 867929, 2022.
Article in English | MEDLINE | ID: mdl-35873003

ABSTRACT

Obesity is a growing medical and social problem worldwide. The control of energy homeostasis in the brain is achieved by various regions including the arcuate hypothalamic nucleus (ARH). The latter comprises a number of neuronal populations including the first order metabolic neurons, appetite-stimulating agouti-related peptide (AgRP) neurons and appetite-suppressing proopiomelanocortin (POMC) neurons. Using an in vivo reductionist approach and POMCCre-dependent CRISPR-Cas9, we demonstrate that miR-15a-5p protects from obesity. Moreover, we have identified Bace1, a gene previously linked to energy metabolism imbalance, as a direct target of miR-15a-5p. This work warrants further investigations of non-coding RNA-mediated regulation of energy homeostasis and might contribute to the development of novel therapeutic approaches to treat metabolic diseases.


Subject(s)
MicroRNAs , Pro-Opiomelanocortin , Agouti-Related Protein/genetics , Agouti-Related Protein/metabolism , Amyloid Precursor Protein Secretases , Animals , Aspartic Acid Endopeptidases , Mice , MicroRNAs/genetics , Obesity/genetics , Obesity/metabolism , Pro-Opiomelanocortin/genetics
2.
Biochem Biophys Res Commun ; 530(1): 209-214, 2020 09 10.
Article in English | MEDLINE | ID: mdl-32828287

ABSTRACT

More than two decades after the discovery of adult neurogenesis in humans, researchers still struggle to elucidate the underlying transcriptional and post-transcriptional mechanisms. RNA interference is a crucially important process in the central nervous system, and its role in adult neurogenesis is poorly understood. In this work, we address the role of Dicer-dependent microRNA biogenesis in neuronal differentiation of adult neural stem cells within the subventricular zone of the mouse brain. Loss of the Dicer1 gene in the tailless (Tlx)-positive cells did not cause the decline in their numbers, but severely affected differentiation. Thus, our findings identify yet another phenomenon associated with microRNA pathway deregulation in adult neural stem cells which might be of relevance both for neuroscience and clinical practice.


Subject(s)
Cell Proliferation , MicroRNAs/genetics , Neural Stem Cells/cytology , Neurogenesis , Adult Stem Cells/cytology , Adult Stem Cells/metabolism , Animals , Cells, Cultured , DEAD-box RNA Helicases/genetics , Female , Gene Expression Regulation, Developmental , Lateral Ventricles/cytology , Lateral Ventricles/metabolism , Male , Mice , Neural Stem Cells/metabolism , Ribonuclease III/genetics , Transcriptome
3.
J Vis Exp ; (159)2020 05 17.
Article in English | MEDLINE | ID: mdl-32478714

ABSTRACT

Transgenic animal models are fundamentally important for modern biomedical research. The incorporation of foreign genes into early mouse or rat embryos is an invaluable tool for gene function analysis in living organisms. The standard transgenesis method is based on microinjecting foreign DNA fragments into a pronucleus of a fertilized oocyte. This technique is widely used in mice but remains relatively inefficient and technically demanding in other animal species. The transgene can also be introduced into one-cell-stage embryos via lentiviral infection, providing an effective alternative to standard pronuclear injections, especially in species or strains with a more challenging embryo structure. In this approach, a suspension that contains lentiviral vectors is injected into the perivitelline space of a fertilized rat embryo, which is technically less demanding and has a higher success rate. Lentiviral vectors were shown to efficiently incorporate the transgene into the genome to determine the generation of stable transgenic lines. Despite some limitations (e.g., Biosafety Level 2 requirements, DNA fragment size limits), lentiviral transgenesis is a rapid and efficient transgenesis method. Additionally, using female rats that are mated with a fertile male strain with a different dominant fur color is presented as an alternative to generate pseudopregnant foster mothers.


Subject(s)
Genetic Vectors/genetics , Lentivirus/genetics , Animals , Mice , Rats , Rats, Transgenic
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