4.7 Article

Nonenzymatic function of DPP4 in diabetes-associated mitochondrial dysfunction and cognitive impairment

期刊

ALZHEIMERS & DEMENTIA
卷 18, 期 5, 页码 966-987

出版社

WILEY
DOI: 10.1002/alz.12437

关键词

cognitive impairment; dipeptidyl peptidase-4; inflammation; mitochondria; oxidative stress; signaling; type 2 diabetes

资金

  1. National Natural Science Foundation of China [81770829, 81560144]
  2. Scientific Research and Technology Development Projects of Science and Technology Department of Guangxi Province [1598012-13]
  3. Natural Science Foundation of Guangxi Province [2015GXNSFBA139119]
  4. High-Level Medical Talents Training Program of Guangxi Province [G201903002]

向作者/读者索取更多资源

The study found that DPP4 may promote mitochondrial dysfunction and cognitive impairment in diabetes through non-enzymatic pathways. Increased DPP4 activity was associated with the occurrence of mild cognitive impairment in diabetic patients, and the high expression of DPP4 in the hippocampus of mice was also related to mitochondrial dysfunction and cognitive impairment.
Dipeptidyl peptidase-4 (DPP4) has been proven to exert its functions by both enzymatic and nonenzymatic pathways. The nonenzymatic function of DPP4 in diabetes-associated cognitive impairment remains unexplored. We determined DPP4 protein concentrations or its enzymatic activity in type 2 diabetic patients and db/db mice and tested the impact of the non-enzymatic function of DPP4 on mitochondrial dysfunction and cognitive impairment both in vivo and in vitro. The results show that increased DPP4 activity was an independent risk factor for incident mild cognitive impairment (MCI) in type 2 diabetic patients. In addition, DPP4 was highly expressed in the hippocampus of db/db mice and contributed to mitochondria dysfunction and cognitive impairment. Mechanistically, DPP4 might bind to PAR2 in the hippocampus and trigger GSK-3 beta activation, which downregulates peroxisome proliferator-activated receptor gamma coactivator 1 alpha expression and leads to mitochondria dysfunction, thereby promoting cognitive impairment in diabetes. Our findings indicate that the nonenzymatic function of DPP4 might promote mitochondrial dysfunction and cognitive impairment in diabetes.

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