Utilizing an Animal Model to Identify Brain Neurodegeneration-Related Biomarkers in Aging.
Ming-Hui YangYi-Ming Arthur ChenShan-Chen TuPei-Ling ChiKuo-Pin ChuangChin-Chuan ChangChiang-Hsuan LeeYi-Ling ChenChe-Hsin LeeCheng-Hui YuanYu-Chang TyanPublished in: International journal of molecular sciences (2021)
Glycine N-methyltransferase (GNMT) regulates S-adenosylmethionine (SAMe), a methyl donor in methylation. Over-expressed SAMe may cause neurogenic capacity reduction and memory impairment. GNMT knockout mice (GNMT-KO) was applied as an experimental model to evaluate its effect on neurons. In this study, proteins from brain tissues were studied using proteomic approaches, Haemotoxylin and Eosin staining, immunohistochemistry, Western blotting, and ingenuity pathway analysis. The expression of Receptor-interacting protein 1(RIPK1) and Caspase 3 were up-regulated and activity-dependent neuroprotective protein (ADNP) was down-regulated in GNMT-KO mice regardless of the age. Besides, proteins related to neuropathology, such as excitatory amino acid transporter 2, calcium/calmodulin-dependent protein kinase type II subunit alpha, and Cu-Zn superoxide dismutase were found only in the group of aged wild-type mice; 4-aminobutyrate amino transferase, limbic system-associated membrane protein, sodium- and chloride-dependent GABA transporter 3 and ProSAAS were found only in the group of young GNMT-KO mice and are related to function of neurons; serum albumin and Rho GDP dissociation inhibitor 1 were found only in the group of aged GNMT-KO mice and are connected to neurodegenerative disorders. With proteomic analyses, a pathway involving Gonadotropin-releasing hormone (GnRH) signal was found to be associated with aging. The GnRH pathway could provide additional information on the mechanism of aging and non-aging related neurodegeneration, and these protein markers may be served in developing future therapeutic treatments to ameliorate aging and prevent diseases.
Keyphrases
- protein kinase
- wild type
- amino acid
- high fat diet induced
- binding protein
- gene expression
- protein protein
- spinal cord injury
- white matter
- healthcare
- south africa
- insulin resistance
- dna methylation
- type diabetes
- resting state
- brain injury
- metabolic syndrome
- multiple sclerosis
- functional connectivity
- label free
- flow cytometry
- middle aged