Developmental atlas of the RNA editome in Sus scrofa skeletal muscle
DNA RESEARCH
Authors: Yang, Yalan; Zhu, Min; Fan, Xinhao; Yao, Yilong; Yan, Junyu; Tang, Yijie; Liu, Siyuan; Li, Kui; Tang, Zhonglin
Abstract
Adenosine-to-inosine (A-to-I) RNA editing meditated by adenosine deaminases acting on RNA (ADARs) enzymes is a widespread post-transcriptional event in mammals. However, A-to-I editing in skeletal muscle remains poorly understood. By integrating strand-specific RNA-seq, whole genome bisulphite sequencing, and genome sequencing data, we comprehensively profiled the A-to-I editome in developing skeletal muscles across 27 prenatal and postnatal stages in pig, an important farm animal and biomedical model. We detected 198,892 A-to-I editing sites and found that they occurred more frequently at prenatal stages and showed low conservation among pig, human, and mouse. Both the editing level and frequency decreased during development and were positively correlated with ADAR enzymes expression. The hyper-edited genes were functionally related to the cell cycle and cell division. A co-editing module associated with myogenesis was identified. The developmentally differential editing sites were functionally enriched in genes associated with muscle development, their editing levels were highly correlated with expression of their host mRNAs, and they potentially influenced the gain/loss of miRNA binding sites. Finally, we developed a database to visualize the Sus scrofa RNA editome. Our study presents the first profile of the dynamic A-to-I editome in developing animal skeletal muscle and provides evidences that RNA editing is a vital regulator of myogenesis.
Clinical, radiological and possible pathological overlap of cystic leukoencephalopathy without megalencephaly and Aicardi-Goutieres syndrome
EUROPEAN JOURNAL OF PAEDIATRIC NEUROLOGY
Authors: Tonduti, Davide; Orcesi, Simona; Jenkinson, Emma M.; Dorboz, Imen; Renaldo, Florence; Panteghini, Celeste; Rice, Gillian I.; Henneke, Marco; Livingston, John H.; Elmaleh, Monique; Burglen, Lydie; Willemsen, Michel A. A. P.; Chiapparini, Luisa; Garavaglia, Barbara; Rodriguez, Diana; Boespflug-Tanguy, Odile; Moroni, Isabella; Crow, Yanick J.
Abstract
Background: Cystic leukoencephalopathy without megalencephaly is a disorder related in some cases to RNASET2 mutations and characterized by bilateral anterior temporal subcortical cysts and multifocal lobar white matter lesions with sparing of central white matter structures. This phenotype significantly overlaps with the sequelae of in utero cytomegalovirus (CMV) infection, including the presence of intracranial calcification in some cases. Aicardi-Goutieres syndrome (AGS) is another inherited leukodystrophy with cerebral calcification mimicking congenital infection. Clinical, radiological and biochemical criteria for the diagnosis of AGS have been established, although the breadth of phenotype associated with mutations in the AGS-related genes is much greater than previously envisaged. Patients and Methods: We describe the clinical, biochemical and radiological findings of five patients demonstrating a phenotype reminiscent of AGS. Results: All patients were found to carry biallelic mutations of RNASET2. Conclusions: Our patients illustrate the clinical and radiological overlap that can be seen between RNASET2-related leukodystrophy and AGS in some cases. Our data highlight the need to include both disorders in the same differential diagnosis, and hint at possible shared pathomechanisms related to auto-inflammation which are worthy of further investigation. (C) 2016 European Paediatric Neurology Society. Published by Elsevier Ltd. All rights reserved.