Meta-Analysis Identifies BDNF and Novel Common Genes Differently Altered in Cross-Species Models of Rett Syndrome

被引:6
|
作者
Haase, Florencia [1 ,2 ,3 ]
Singh, Rachna [4 ]
Gloss, Brian [5 ]
Tam, Patrick [1 ,6 ]
Gold, Wendy [1 ,2 ,3 ]
机构
[1] Univ Sydney, Fac Med & Hlth, Sch Med Sci, Camperdown, NSW 2006, Australia
[2] Childrens Hosp Westmead, Kids Neurosci Ctr, Kids Res, Westmead, NSW 2145, Australia
[3] Childrens Hosp Westmead, Mol Neurobiol Res Lab, Kids Res, Westmead, NSW 2145, Australia
[4] Univ Notre Dame, Sch Med Sydney, Chippendale, NSW 2007, Australia
[5] Westmead Inst Med Res, Westmead Res Hub, Westmead, NSW 2145, Australia
[6] Univ Sydney, Childrens Med Res Inst, Embryol Res Unit, Camperdown, NSW 2006, Australia
关键词
Rett syndrome; WGCNA; MECP2; PLURIPOTENT STEM-CELLS; MOUSE MODEL; MECP2; DISRUPTION; MUTATIONS; PHENOTYPE; PROTEINS; SURVIVAL; DEFICITS; DISEASE;
D O I
10.3390/ijms231911125
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Rett syndrome (RTT) is a rare disorder and one of the most abundant causes of intellectual disabilities in females. Single mutations in the gene coding for methyl-CpG-binding protein 2 (MeCP2) are responsible for the disorder. MeCP2 regulates gene expression as a transcriptional regulator as well as through epigenetic imprinting and chromatin condensation. Consequently, numerous biological pathways on multiple levels are influenced. However, the exact molecular pathways from genotype to phenotype are currently not fully elucidated. Treatment of RTT is purely symptomatic as no curative options for RTT have yet to reach the clinic. The paucity of this is mainly due to an incomplete understanding of the underlying pathophysiology of the disorder with no clinically useful common disease drivers, biomarkers, or therapeutic targets being identified. With the premise of identifying universal and robust disease drivers and therapeutic targets, here, we interrogated a range of RTT transcriptomic studies spanning different species, models, and MECP2 mutations. A meta-analysis using RNA sequencing data from brains of RTT mouse models, human post-mortem brain tissue, and patient-derived induced pluripotent stem cell (iPSC) neurons was performed using weighted gene correlation network analysis (WGCNA). This study identified a module of genes common to all datasets with the following ten hub genes driving the expression: ATRX, ADCY7, ADCY9, SOD1, CACNA1A, PLCG1, CCT5, RPS9, BDNF, and MECP2. Here, we discuss the potential benefits of these genes as therapeutic targets.
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页数:20
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