Department of Neuromuscular Research, National Center of Neurology and Psychiatry (NCNP), National Institute of Neuroscience, 4-1-1 Ogawahigashi, Tokyo 187-8502, Japan; Medical Genome Center, NCNP, Tokyo, Kodaira, Japan. Electronic address: nishino@ncnp.go.jp.
INSERM, GIN-U1216, CHU Grenoble Alpes, Grenoble Institut Neurosciences, University Grenoble Alpes, Bat EJ Safra, Chemin Fortuné Ferrini, La Tronche, Grenoble, France.
INSERM, GIN-U1216, CHU Grenoble Alpes, Grenoble Institut Neurosciences, University Grenoble Alpes, Bat EJ Safra, Chemin Fortuné Ferrini, La Tronche, Grenoble, France.
Department of Neuromuscular Research, National Institute of Neuroscience, National Center of Neurology and Psychiatry, 187-8502 Tokyo, Japan; Department of Genome Medicine Development, Medical Genome Center, National Center of Neurology and Psychiatry, 187-8551 Tokyo, Japan.
From the Department of Learning, Informatics and Medical Education, Karolinska Institutet; Function Area Occupational Therapy and Physical Therapy, Allied Health Professionals Function, Karolinska University Hospital, Department of Neurobiology, Care Science and Society, Division of Physiotherapy and Department of Medicine, Karolinska Institutet; Division of Rheumatology, Rheumatology Unit, Department of Medicine, Karolinska Institutet, Solna, Sweden; Division of Rheumatology, Department of Medicine, Johns Hopkins University, Baltimore, Maryland, USA; Division of Rheumatology, Department of Internal Medicine, Medical Research Center, College of Medicine, Department of Molecular Medicine and Biopharmaceutical Sciences, Seoul National University, Seoul, Korea; Division of Rheumatology, Fiona Stanley Hospital, Institute for Immunology and Infectious Diseases, Murdoch University, Perth; The Notre Dame University Fremantle, Fremantle, Australia; Amsterdam UMC, University of Amsterdam, Department of Neurology, Amsterdam Neuroscience, Amsterdam, the Netherlands; Center for Global Health, University of Ottawa, Ottawa, Ontario, Canada.
M. Regardt, PhD, Occupational Therapist, Department of Learning, Informatics and Medical Education, Karolinska Institutet, and Function Area Occupational Therapy and Physical Therapy, Allied Health Professionals Function, Karolinska University Hospital; C.A. Mecoli, MD, Division of Rheumatology, Department of Medicine, Johns Hopkins University; J.K. Park, MD, PhD, Division of Rheumatology, Department of Internal Medicine, Seoul National University Hospital; I. de Groot, Patient Research Partner; C. Sarver, Patient Research Partner; M. Needham, MD, Division of Rheumatology, Fiona Stanley Hospital, Institute for Immunology and Infectious Diseases, Murdoch University, and The Notre Dame University; M. de Visser, MD, PhD, Amsterdam UMC, University of Amsterdam, Department of Neurology, Amsterdam Neuroscience; B. Shea, MSN, Center for Global Health, University of Ottawa; C.O. Bingham III, MD, Division of Rheumatology, Department of Medicine, Johns Hopkins University; I.E. Lundberg, MD, PhD, Division of Rheumatology, Rheumatology Unit, Department of Medicine, Karolinska Institutet; Y.W. Song, MD, PhD, Division of Rheumatology, Department of Internal Medicine, Medical Research Center, College of Medicine, Department of Molecular Medicine and Biopharmaceutical Sciences, Seoul National University; L. Christopher-Stine, MD, Division of Rheumatology, Department of Medicine, Johns Hopkins University; H. Alexanderson, PhD, Physiotherapist, Department of Neurobiology, Care Science and Society, Division of Physiotherapy and Department of Medicine Solna, Karolinska Institutet, and Function Area Occupational Therapy and Physical Therapy, Allied Health Professionals Function, Karolinska University Hospital. M. Regardt and Dr. C. Mecoli are co-first authors.
Department of Neuromuscular Research, National Center of Neurology and Psychiatry (NCNP), National Institute of Neuroscience, 4-1-1 Ogawahigashi, Tokyo 187-8502, Japan; Medical Genome Center, NCNP, Tokyo, Kodaira, Japan; Department of Pediatrics, Showa General Hospital, Tokyo, Kodaira, Japan.
INSERM, GIN-U1216, CHU Grenoble Alpes, Grenoble Institut Neurosciences, University Grenoble Alpes, Bat EJ Safra, Chemin Fortuné Ferrini, La Tronche, Grenoble, France.
INSERM, GIN-U1216, CHU Grenoble Alpes, Grenoble Institut Neurosciences, University Grenoble Alpes, Bat EJ Safra, Chemin Fortuné Ferrini, La Tronche, Grenoble, France. isabelle.marty@univ-grenoble-alpes.fr.
Neuromuscular Morphology Unit, Myology Institute, Groupe Hospitalier Universitaire La Pitié-Salpêtrière, Paris, France. matteo.garibaldi@uniroma1.it.
Unit of Neuromuscular Diseases, Neuromuscular Disease Centre, Department of Neurology Mental Health and Sensory Organs (NESMOS), Faculty of Medicine and Psychology, SAPIENZA University of Rome, Sant'Andrea Hospital, Via di Grottarossa 1035-1039, 00189, Rome, Italy. matteo.garibaldi@uniroma1.it.
Service Neurologie Médicale, Centre de Référence Maladies Neuromusculaire Paris-Est-Ile de France, CHU Raymond-Poincaré Paris Ouest, Garches, France.
U1179 UVSQ-INSERM Handicap Neuromusculaire: Physiologie, Biothérapie et Pharmacologie appliquées, UFR des sciences de la santé Simone Veil, Université Versailles-Saint-Quentin-en-Yvelines, Versailles, France.
Unit of Neuromuscular Diseases, Neuromuscular Disease Centre, Department of Neurology Mental Health and Sensory Organs (NESMOS), Faculty of Medicine and Psychology, SAPIENZA University of Rome, Sant'Andrea Hospital, Via di Grottarossa 1035-1039, 00189, Rome, Italy.
Identification of prognostic factors for hepatocellular carcinoma (HCC) opens new perspectives for therapy. Circulating and cellular onco-miRNAs are noncoding RNAs which can control the expression of ...
We used The Cancer Genome Atlas (commonly known as TCGA) data analysis to evaluate the expression of APE1 in HCC. To identify differentially-expressed miRNAs (DEmiRNAs) upon APE1 depletion through spe...
APE1 is considerably overexpressed in HCC tissues compared to normal liver, according to the TCGA-liver HCC (known as LIHC) dataset. Enrichment analyses showed that APE1-regulated miRNAs are implicate...
APE1 regulates specific miRNAs having prognostic value in HCC....
APE1 is an essential gene involved in DNA damage repair, the redox regulation of transcriptional factors (TFs) and RNA processing. APE1 overexpression is common in cancers and correlates with poor pat...
Human thymine-DNA glycosylase (TDG) excises T mispaired with G in a CpG context to initiate the base excision repair (BER) pathway. TDG is also involved in epigenetic regulation of gene expression by ...
Rapid and sensitive nucleic acid detection is vital in disease diagnosis and therapeutic assessment. Herein, we propose a co-freezing localized CRISPR-Cas12a (CL-Cas12a) strategy for sensitive nucleic...
Recent advances in CRISPR-Cas genomic editors have shifted us ever closer to achieving the ultimate therapeutic goal of accomplishing any edit in any cell. However, delivery of this editing machinery ...
Pneumocystis jirovecii is a prevalent opportunistic fungal pathogen that can lead to life-threatening Pneumocystis pneumonia in immunocompromised individuals. Given that timely and accurate diagnosis ...
Single-nucleotide polymorphism (SNP) detection is critical for diagnosing diseases, and the development of rapid and accurate diagnostic tools is essential for treatment and prevention. Allele-specifi...
Many CRISPR-Cas immune systems generate guide (g)RNAs using trans-activating CRISPR RNAs (tracrRNAs). Recent work revealed that Cas9 tracrRNAs could be reprogrammed to convert any RNA-of-interest into...
Gene targeting (GT) allows precise manipulation of genome sequences, such as knock-ins and sequence substitutions, but GT in seed plants remains a challenging task. Engineered sequence-specific nuclea...
The outcome of CRISPR-Cas-mediated genome modifications is dependent on DNA double-strand break (DSB) processing and repair pathway choice. Homology-directed repair (HDR) of protein-blocked DSBs requi...