Transcriptome signatures from discordant sibling pairs reveal changes in peripheral blood immune cell composition in Autism Spectrum Disorder
Autor: | Filosi, Michele, Kam-Thong, Tony, Essioux, Laurent, Muglia, Pierandrea, Trabetti, Elisabetta, Spooren, Will, Müller-Myshok, Bertram, Domenici, EnricoAlibrio G, Anchisi L, Andruccioli M, Benvenuto A, Battistella PA, Boscaini F, Bravaccio C, Ceppi E, Cosentino D, Curatolo P, Da Ros L, Bernardina BD, De Giacomo A, Di Vita G, Domenici E, Elia M, Gitti F, Grittani S, Lamanna AL, Mani E, Manzi B, Margari L, Masi G, Molteni M, Muglia P, Nardocci F, Pascotto A, Parmeggiani A, Pignatti PF, Piroddi T, Prandini P, Ratti E, Rizzini P, Russo S, Scifo R, Tancredi R, Tiberti A, Trabetti E, Zoccante L, Zuddas A. |
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Přispěvatelé: | Michele Filosi , Tony Kam-Thong , Laurent Essioux , Pierandrea Muglia , Elisabetta Trabetti , Will Spooren , Bertram Müller-Myshok , Italian Autism Network, Enrico Domenici, Antonia Parmeggiani, Filosi, Michele, Kam-Thong, Tony, Essioux, Laurent, Muglia, Pierandrea, Trabetti, Elisabetta, Spooren, Will, Müller-Myshok, Bertram, Domenici, Enricoalibrio, G, Anchisi, L, Andruccioli, M, Benvenuto, A, Battistella, Pa, Boscaini, F, Bravaccio, C, Ceppi, E, Cosentino, D, Curatolo, P, Da Ros, L, Bernardina, Bd, De Giacomo, A, Di Vita, G, Domenici, E, Elia, M, Gitti, F, Grittani, S, Lamanna, Al, Mani, E, Manzi, B, Margari, L, Masi, G, Molteni, M, Muglia, P, Nardocci, F, Pascotto, A, Parmeggiani, A, Pignatti, Pf, Piroddi, T, Prandini, P, Ratti, E, Rizzini, P, Russo, S, Scifo, R, Tancredi, R, Tiberti, A, Trabetti, E, Zoccante, L, Zuddas, A. |
Jazyk: | angličtina |
Rok vydání: | 2020 |
Předmět: |
0301 basic medicine
Autism Spectrum Disorder autism spectrum disorders Biology Molecular neuroscience Peripheral blood mononuclear cell Article lcsh:RC321-571 Transcriptome 03 medical and health sciences Cellular and Molecular Neuroscience 0302 clinical medicine transcriptomic signatures mental disorders medicine Humans Allele Sibling Autistic Disorder lcsh:Neurosciences. Biological psychiatry. Neuropsychiatry Biological Psychiatry Genetics Autism genetics neuroscience Blood Cells Siblings medicine.disease Gene expression profiling Psychiatry and Mental health 030104 developmental biology Asperger syndrome Autism spectrum disorder Autism 030217 neurology & neurosurgery Biomarkers |
Zdroj: | Translational Psychiatry, Vol 10, Iss 1, Pp 1-12 (2020) Translational Psychiatry |
ISSN: | 2158-3188 |
DOI: | 10.1038/s41398-020-0778-x |
Popis: | Notwithstanding several research efforts in the past years, robust and replicable molecular signatures for autism spectrum disorders from peripheral blood remain elusive. The available literature on blood transcriptome in ASD suggests that through accurate experimental design it is possible to extract important information on the disease pathophysiology at the peripheral level. Here we exploit the availability of a resource for molecular biomarkers in ASD, the Italian Autism Network (ITAN) collection, for the investigation of transcriptomic signatures in ASD based on a discordant sibling pair design. Whole blood samples from 75 discordant sibling pairs selected from the ITAN network where submitted to RNASeq analysis and data analyzed by complementary approaches. Overall, differences in gene expression between affected and unaffected siblings were small. In order to assess the contribution of differences in the relative proportion of blood cells between discordant siblings, we have applied two different cell deconvolution algorithms, showing that the observed molecular signatures mainly reflect changes in peripheral blood immune cell composition, in particular NK cells. The results obtained by the cell deconvolution approach are supported by the analysis performed by WGCNA. Our report describes the largest differential gene expression profiling in peripheral blood of ASD subjects and controls conducted by RNASeq. The observed signatures are consistent with the hypothesis of immune alterations in autism and an increased risk of developing autism in subjects exposed to prenatal infections or stress. Our study also points to a potential role of NMUR1, HMGB3, and PTPRN2 in ASD. |
Databáze: | OpenAIRE |
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