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  1. Article ; Online: HDAC inhibitors as pharmacological treatment for Duchenne muscular dystrophy: a discovery journey from bench to patients: (Trends in Molecular Medicine, 30:3 p:278-294, 2024).

    Mozzetta, Chiara / Sartorelli, Vittorio / Steinkuhler, Christian / Puri, Pier Lorenzo

    Trends in molecular medicine

    2024  

    Language English
    Publishing date 2024-04-19
    Publishing country England
    Document type Published Erratum
    ZDB-ID 2036490-8
    ISSN 1471-499X ; 1471-4914
    ISSN (online) 1471-499X
    ISSN 1471-4914
    DOI 10.1016/j.molmed.2024.03.012
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  2. Article: Epigenetic control of muscle stem cells: time for a new dimension.

    Bianconi, Valeria / Mozzetta, Chiara

    Trends in genetics : TIG

    2022  Volume 38, Issue 5, Page(s) 501–513

    Abstract: Muscle stem cells (MuSCs) are responsible for skeletal muscle homeostasis and repair. In response to extracellular cues, MuSCs activate from quiescence, expand, differentiate into mature myofibers, and self-renew within their regenerative niche. These ... ...

    Abstract Muscle stem cells (MuSCs) are responsible for skeletal muscle homeostasis and repair. In response to extracellular cues, MuSCs activate from quiescence, expand, differentiate into mature myofibers, and self-renew within their regenerative niche. These steps are accomplished by the dynamic action of different chromatin-modifying enzymes that, cooperating with myogenic transcription factors, coordinately regulate defined transcriptional programs. Here, we review the current knowledge on the epigenetic dynamics that allow MuSCs' fate decisions. We describe the emerging mechanisms showing how chromatin topology impacts the 3D genome architecture of MuSCs during myogenesis. Because these processes contribute to shape and maintain cell identity, we highlight how defects in proper epigenetic control of MuSCs' fate decisions underlie the pathogenesis of muscle diseases, causing the acquisition of derailed cell fates and the incapacity to properly self-renew.
    MeSH term(s) Cell Differentiation/genetics ; Chromatin/genetics ; Epigenesis, Genetic ; Muscle, Skeletal/physiology ; Stem Cells
    Chemical Substances Chromatin
    Language English
    Publishing date 2022-01-22
    Publishing country England
    Document type Journal Article ; Review ; Research Support, Non-U.S. Gov't
    ZDB-ID 619240-3
    ISSN 1362-4555 ; 0168-9525 ; 0168-9479
    ISSN (online) 1362-4555
    ISSN 0168-9525 ; 0168-9479
    DOI 10.1016/j.tig.2022.01.001
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  3. Article ; Online: HDAC inhibitors as pharmacological treatment for Duchenne muscular dystrophy: a discovery journey from bench to patients.

    Mozzetta, Chiara / Sartorelli, Vittorio / Steinkuhler, Christian / Puri, Pier Lorenzo

    Trends in molecular medicine

    2024  Volume 30, Issue 3, Page(s) 278–294

    Abstract: Earlier evidence that targeting the balance between histone acetyltransferases (HATs) and deacetylases (HDACs), through exposure to HDAC inhibitors (HDACis), could enhance skeletal myogenesis, prompted interest in using HDACis to promote muscle ... ...

    Abstract Earlier evidence that targeting the balance between histone acetyltransferases (HATs) and deacetylases (HDACs), through exposure to HDAC inhibitors (HDACis), could enhance skeletal myogenesis, prompted interest in using HDACis to promote muscle regeneration. Further identification of constitutive HDAC activation in dystrophin-deficient muscles, caused by dysregulated nitric oxide (NO) signaling, provided the rationale for HDACi-based therapeutic interventions for Duchenne muscular dystrophy (DMD). In this review, we describe the molecular, preclinical, and clinical evidence supporting the efficacy of HDACis in countering disease progression by targeting pathogenic networks of gene expression in multiple muscle-resident cell types of patients with DMD. Given that givinostat is paving the way for HDACi-based interventions in DMD, next-generation HDACis with optimized therapeutic profiles and efficacy could be also explored for synergistic combinations with other therapeutic strategies.
    MeSH term(s) Mice ; Animals ; Humans ; Muscular Dystrophy, Duchenne/drug therapy ; Muscular Dystrophy, Duchenne/metabolism ; Histone Deacetylase Inhibitors/pharmacology ; Histone Deacetylase Inhibitors/therapeutic use ; Muscle, Skeletal/metabolism ; Mice, Inbred mdx ; Dystrophin/metabolism ; Signal Transduction
    Chemical Substances Histone Deacetylase Inhibitors ; Dystrophin
    Language English
    Publishing date 2024-02-26
    Publishing country England
    Document type Journal Article ; Review
    ZDB-ID 2036490-8
    ISSN 1471-499X ; 1471-4914
    ISSN (online) 1471-499X
    ISSN 1471-4914
    DOI 10.1016/j.molmed.2024.01.007
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  4. Article ; Online: Isolation and Culture of Muscle Stem Cells.

    Mozzetta, Chiara

    Methods in molecular biology (Clifton, N.J.)

    2016  Volume 1480, Page(s) 311–322

    Abstract: Polycomb group (PcG) proteins are key epigenetic factors responsible for the proper spatiotemporal repression of defined transcriptional programs along the process of cell differentiation, including myogenesis. The discovery of the pivotal role played by ...

    Abstract Polycomb group (PcG) proteins are key epigenetic factors responsible for the proper spatiotemporal repression of defined transcriptional programs along the process of cell differentiation, including myogenesis. The discovery of the pivotal role played by PcG factors during myogenic differentiation relied on the possibility to culture myogenic cells in vitro. We describe here the methods currently used to isolate muscle stem cells (MuSCs) both from single myofibers and from bulk muscles by fluorescence-activated cell sorting (FACS), highlighting experimental details and critical steps. Through these techniques MuSCs can be efficiently isolated and cultured in vitro to recapitulate the different phases of myogenesis: activation, expansion, differentiation, and self-renewal.
    Language English
    Publishing date 2016
    Publishing country United States
    Document type Journal Article
    ISSN 1940-6029
    ISSN (online) 1940-6029
    DOI 10.1007/978-1-4939-6380-5_27
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  5. Article ; Online: Synaptic alterations as a neurodevelopmental trait of Duchenne muscular dystrophy.

    De Stefano, Maria Egle / Ferretti, Valentina / Mozzetta, Chiara

    Neurobiology of disease

    2022  Volume 168, Page(s) 105718

    Abstract: Dystrophinopaties, e.g., Duchenne muscular dystrophy (DMD), Becker muscular dystrophy and X-linked dilated cardiomyopathy are inherited neuromuscular diseases, characterized by progressive muscular degeneration, which however associate with a significant ...

    Abstract Dystrophinopaties, e.g., Duchenne muscular dystrophy (DMD), Becker muscular dystrophy and X-linked dilated cardiomyopathy are inherited neuromuscular diseases, characterized by progressive muscular degeneration, which however associate with a significant impact on general system physiology. The more severe is the pathology and its diversified manifestations, the heavier are its effects on organs, systems, and tissues other than muscles (skeletal, cardiac and smooth muscles). All dystrophinopaties are characterized by mutations in a single gene located on the X chromosome encoding dystrophin (Dp427) and its shorter isoforms, but DMD is the most devasting: muscular degenerations manifests within the first 4 years of life, progressively affecting motility and other muscular functions, and leads to a fatal outcome between the 20s and 40s. To date, after years of studies on both DMD patients and animal models of the disease, it has been clearly demonstrated that a significant percentage of DMD patients are also afflicted by cognitive, neurological, and autonomic disorders, of varying degree of severity. The anatomical correlates underlying neural functional damages are established during embryonic development and the early stages of postnatal life, when brain circuits, sensory and motor connections are still maturing. The impact of the absence of Dp427 on the development, differentiation, and consolidation of specific cerebral circuits (hippocampus, cerebellum, prefrontal cortex, amygdala) is significant, and amplified by the frequent lack of one or more of its lower molecular mass isoforms. The most relevant aspect, which characterizes DMD-associated neurological disorders, is based on morpho-functional alterations of selective synaptic connections within the affected brain areas. This pathological feature correlates neurological conditions of DMD to other severe neurological disorders, such as schizophrenia, epilepsy and autistic spectrum disorders, among others. This review discusses the organization and the role of the dystrophin-dystroglycan complex in muscles and neurons, focusing on the neurological aspect of DMD and on the most relevant morphological and functional synaptic alterations, in both central and autonomic nervous systems, described in the pathology and its animal models.
    MeSH term(s) Animals ; Cardiomyopathy, Dilated ; Dystrophin/genetics ; Humans ; Muscular Dystrophy, Duchenne/genetics ; Muscular Dystrophy, Duchenne/pathology ; Neurons/pathology ; Protein Isoforms
    Chemical Substances Dystrophin ; Protein Isoforms
    Language English
    Publishing date 2022-04-04
    Publishing country United States
    Document type Journal Article ; Review ; Research Support, Non-U.S. Gov't
    ZDB-ID 1211786-9
    ISSN 1095-953X ; 0969-9961
    ISSN (online) 1095-953X
    ISSN 0969-9961
    DOI 10.1016/j.nbd.2022.105718
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  6. Article ; Online: Challenging the "chromatin hypothesis" of cardiac laminopathies with

    Mozzetta, Chiara / Tedesco, Francesco Saverio

    The Journal of cell biology

    2019  Volume 218, Issue 9, Page(s) 2826–2828

    Abstract: Lamins A and C are intermediate filaments that provide structural support to the nuclear envelope and regulate gene expression. In this issue, Bertero et al. (2019. ...

    Abstract Lamins A and C are intermediate filaments that provide structural support to the nuclear envelope and regulate gene expression. In this issue, Bertero et al. (2019.
    MeSH term(s) Chromatin ; Haploinsufficiency ; Induced Pluripotent Stem Cells ; Lamin Type A/genetics ; Nuclear Envelope
    Chemical Substances Chromatin ; Lamin Type A
    Language English
    Publishing date 2019-08-19
    Publishing country United States
    Document type Journal Article ; Comment
    ZDB-ID 218154-x
    ISSN 1540-8140 ; 0021-9525
    ISSN (online) 1540-8140
    ISSN 0021-9525
    DOI 10.1083/jcb.201907166
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  7. Article ; Online: Single Myofiber Isolation and Culture from a Murine Model of Emery-Dreifuss Muscular Dystrophy in Early Post-Natal Development.

    Pegoli, Gloria / Lucini, Federica / Mozzetta, Chiara / Lanzuolo, Chiara

    Journal of visualized experiments : JoVE

    2020  , Issue 161

    Abstract: Autosomal dominant Emery-Dreifuss muscular dystrophy (EDMD) is caused by mutations in the LMNA gene, which encodes the A-type nuclear lamins, intermediate filament proteins that sustain the nuclear envelope and the components of the nucleoplasm. We ... ...

    Abstract Autosomal dominant Emery-Dreifuss muscular dystrophy (EDMD) is caused by mutations in the LMNA gene, which encodes the A-type nuclear lamins, intermediate filament proteins that sustain the nuclear envelope and the components of the nucleoplasm. We recently reported that muscle wasting in EDMD can be ascribed to intrinsic epigenetic dysfunctions affecting muscle (satellite) stem cells regenerative capacity. Isolation and culture of single myofibers is one of the most physiological ex-vivo approaches to monitor satellite cells behavior within their niche, as they remain between the basal lamina surrounding the fiber and the sarcolemma. Therefore, it represents an invaluable experimental paradigm to study satellite cells from a variety of murine models. Here, we describe a re-adapted method to isolate intact and viable single myofibers from post-natal hindlimb muscles (Tibialis Anterior, Extensor Digitorum Longus, Gastrocnemius and Soleus). Following this protocol, we were able to study satellite cells from Lamin Δ8-11 -/- mice, a severe EDMD murine model, at only 19 days after birth. We detail the isolation procedure, as well as the culture conditions for obtaining a good amount of myofibers and their associated satellite-cells-derived progeny. When cultured in growth-factors rich medium, satellite cells derived from wild type mice activate, proliferate, and eventually differentiate or undergo self-renewal. In homozygous Lamin Δ8-11 -/- mutant mice these capabilities are severely impaired. This technique, if strictly followed, allows to study all processes linked to the myofiber-associated satellite cell even in early post-natal developmental stages and in fragile muscles.
    MeSH term(s) Animals ; Disease Models, Animal ; Embryonic Development/genetics ; Humans ; Mice ; Muscle Proteins/metabolism ; Muscle, Skeletal/embryology ; Muscular Dystrophy, Emery-Dreifuss/genetics ; Myoblasts, Skeletal/metabolism
    Chemical Substances Muscle Proteins
    Language English
    Publishing date 2020-07-01
    Publishing country United States
    Document type Journal Article ; Research Support, Non-U.S. Gov't ; Video-Audio Media
    ZDB-ID 2259946-0
    ISSN 1940-087X ; 1940-087X
    ISSN (online) 1940-087X
    ISSN 1940-087X
    DOI 10.3791/61516
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  8. Article: Editorial: Epigenetic Regulation of Stem Cell Plasticity in Tissue Regeneration and Disease.

    Chiacchiera, Fulvio / Morey, Lluis / Mozzetta, Chiara

    Frontiers in cell and developmental biology

    2020  Volume 8, Page(s) 82

    Language English
    Publishing date 2020-02-19
    Publishing country Switzerland
    Document type Editorial
    ZDB-ID 2737824-X
    ISSN 2296-634X
    ISSN 2296-634X
    DOI 10.3389/fcell.2020.00082
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  9. Article ; Online: Targeting the Expression of Long Noncoding RNAs in Murine Satellite Cells from Single Myofibers.

    Macino, Martina / Biferali, Beatrice / Cipriano, Andrea / Ballarino, Monica / Mozzetta, Chiara

    Bio-protocol

    2021  Volume 11, Issue 21, Page(s) e4209

    Abstract: LncRNAs have been recently implicated in the epigenetic control of muscle differentiation and their functional characterization has traditionally relied ... ...

    Abstract LncRNAs have been recently implicated in the epigenetic control of muscle differentiation and their functional characterization has traditionally relied upon
    Language English
    Publishing date 2021-11-05
    Publishing country United States
    Document type Journal Article
    ZDB-ID 2833269-6
    ISSN 2331-8325 ; 2331-8325
    ISSN (online) 2331-8325
    ISSN 2331-8325
    DOI 10.21769/BioProtoc.4209
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  10. Article ; Online: The RNA helicase DDX5 cooperates with EHMT2 to sustain alveolar rhabdomyosarcoma growth.

    Gualtieri, Alberto / Bianconi, Valeria / Renzini, Alessandra / Pieroni, Luisa / Licursi, Valerio / Mozzetta, Chiara

    Cell reports

    2022  Volume 40, Issue 9, Page(s) 111267

    Abstract: Rhabdomyosarcoma (RMS) is the most common soft-tissue sarcoma of childhood characterized by the inability to exit the proliferative myoblast-like stage. The alveolar fusion positive subtype (FP-RMS) is the most aggressive and is mainly caused by the ... ...

    Abstract Rhabdomyosarcoma (RMS) is the most common soft-tissue sarcoma of childhood characterized by the inability to exit the proliferative myoblast-like stage. The alveolar fusion positive subtype (FP-RMS) is the most aggressive and is mainly caused by the expression of PAX3/7-FOXO1 oncoproteins, which are challenging pharmacological targets. Here, we show that the DEAD box RNA helicase 5 (DDX5) is overexpressed in alveolar RMS cells and that its depletion and pharmacological inhibition decrease FP-RMS viability and slow tumor growth in xenograft models. Mechanistically, we provide evidence that DDX5 functions upstream of the EHMT2/AKT survival signaling pathway, by directly interacting with EHMT2 mRNA, modulating its stability and consequent protein expression. We show that EHMT2 in turns regulates PAX3-FOXO1 activity in a methylation-dependent manner, thus sustaining FP-RMS myoblastic state. Together, our findings identify another survival-promoting loop in FP-RMS and highlight DDX5 as a potential therapeutic target to arrest RMS growth.
    MeSH term(s) Cell Line, Tumor ; DEAD-box RNA Helicases/genetics ; DEAD-box RNA Helicases/metabolism ; Gene Expression Regulation, Neoplastic ; Histocompatibility Antigens ; Histone-Lysine N-Methyltransferase/metabolism ; Humans ; Oncogene Proteins, Fusion/metabolism ; Paired Box Transcription Factors/genetics ; RNA Helicases/metabolism ; Rhabdomyosarcoma/metabolism ; Rhabdomyosarcoma, Alveolar/genetics ; Rhabdomyosarcoma, Alveolar/metabolism ; Rhabdomyosarcoma, Alveolar/pathology ; Rhabdomyosarcoma, Embryonal
    Chemical Substances Histocompatibility Antigens ; Oncogene Proteins, Fusion ; Paired Box Transcription Factors ; EHMT2 protein, human (EC 2.1.1.43) ; Histone-Lysine N-Methyltransferase (EC 2.1.1.43) ; Ddx5 protein, human (EC 3.6.1.-) ; DEAD-box RNA Helicases (EC 3.6.4.13) ; RNA Helicases (EC 3.6.4.13)
    Language English
    Publishing date 2022-08-18
    Publishing country United States
    Document type Journal Article ; Research Support, Non-U.S. Gov't
    ZDB-ID 2649101-1
    ISSN 2211-1247 ; 2211-1247
    ISSN (online) 2211-1247
    ISSN 2211-1247
    DOI 10.1016/j.celrep.2022.111267
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