Integrated cortical and plasma proteomic analysis of mice and human models of autism spectrum disorder: Potential involvement of galectin-3-binding protein.
Leandro Val Sayson, Hyun Jun Lee, Nicole Bon Campomayor, Sweetie Balataria, Mikyung Kim, Ara Cho, Eugene C Yi, Chae Rim Lee, Bung-Nyun Kim, Jae Hoon Cheong, Hee Jin Kim
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引用次数: 0
Abstract
Despite decades of research, the etiology of autism spectrum disorder (ASD) remains largely uncomprehended, probably due to its clinical and phenotypic heterogeneity. Animal models, particularly contactin-associated protein-like 2 (Cntnap2) knockout (KO) mice, have been instrumental in elucidating ASD-related neurobiological mechanisms, as they exhibit ASD-like phenotypes, such as impaired social interactions in sociability paradigms. This provides the possibility for identifying detectable protein-based biomarkers that may assist in ASD diagnosis. Herein, we implemented an integrated approach to analyze the plasma and prefrontal cortex (PFC) proteomes exclusively from Cntnap2 KO mice (n = 3) or patients diagnosed with ASD (n = 3), along with gene ontology (GO) functional enrichment and pathway analysis. Overlapping GO terms and pathways were identified from the proteomic subsets of Cntnap2 KO mice plasma and PFC after dividing differentially expressed proteins (DEPs) into upregulated and downregulated subsets. Overlapping GO terms and pathways were further identified following the comparison of the upregulated and downregulated DEPs found in the plasma of patients with ASD. Under these GO terms and pathways, two (2) common DEPs were identified: downregulated complement C1q subcomponent subunit B (C1QB) and upregulated galectin-3-binding protein (LGALS3BP). The upregulated expression of LGALS3BP, but not C1QB downregulation, in the PFC and blood of Cntnap2 KO mice (n = 12-13) were validated through Western blotting. While future investigations will include other preclinical ASD models and clinically heterogeneous human populations, overall, these preliminary findings suggest a potential role for LGALS3BP as a biomarker for ASD and support the involvement of both central and peripheral mechanisms in its pathophysiology.
期刊介绍:
Neuroscience publishes papers describing the results of original research on any aspect of the scientific study of the nervous system. Any paper, however short, will be considered for publication provided that it reports significant, new and carefully confirmed findings with full experimental details.