Hypoxia‐sensing VGLL4 promotes LDHA‐driven lactate production to ameliorate neuronal dysfunction in a cellular model relevant to Alzheimer's disease

Author:

Tian Qiuyun1ORCID,Li Junjie1ORCID,Wu Bin1ORCID,Wang Jiaojiao1ORCID,Xiao Qian1ORCID,Tian Na1ORCID,Yi Lilin1ORCID,Luo Man1ORCID,Li Zhaolun1ORCID,Pang Yayan1ORCID,Shi Xiuyu1ORCID,Dong Zhifang12ORCID

Affiliation:

1. Pediatric Research Institute, Ministry of Education Key Laboratory of Child Development and Disorders, National Clinical Research Center for Child Health and Disorders, Chongqing Key Laboratory of Translational Medical Research in Cognitive Development and Learning and Memory Disorders Children's Hospital of Chongqing Medical University Chongqing China

2. Institute for Brain Science and Disease of Chongqing Medical University Chongqing China

Abstract

AbstractAlzheimer's disease (AD) is a neurodegenerative disease where abnormal amyloidogenic processing of amyloid‐β precursor protein (APP) occurs and has been linked to neuronal dysfunction. Hypometabolism of glucose in the brain can lead to synaptic loss and neuronal death, which in turn exacerbates energy deficiency and amyloid‐β peptide (Aβ) accumulation. Lactate produced by anaerobic glycolysis serves as an energy substrate supporting neuronal function and facilitating neuronal repair. Vestigial‐like family member 4 (VGLL4) has been recognized as a key regulator of the hypoxia‐sensing pathway. However, the role of VGLL4 in AD remains unexplored. Here, we reported that the expression of VGLL4 protein was significantly decreased in the brain tissue of AD model mice and AD model cells. We further found that overexpression of VGLL4 reduced APP amyloidogenic processing and ameliorated neuronal synaptic damage. Notably, we identified a compromised hypoxia‐sensitive capability of LDHA regulated by VGLL4 in the context of AD. Upregulation of VGLL4 increased the response of LDHA to hypoxia and enhanced the expression levels of LDHA and lactate by inhibiting the ubiquitination and degradation of LDHA. Furthermore, the inhibition of lactate production by using sodium oxamate, an inhibitor of LDHA, suppressed the neuroprotective function of VGLL4 by increasing APP amyloidogenic processing. Taken together, our findings demonstrate that VGLL4 exerts a neuroprotective effect by upregulating LDHA expression and consequently promoting lactate production. Thus, this study suggests that VGLL4 may be a novel player involved in molecular mechanisms relevant for ameliorating neurodegeneration.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Chongqing

Publisher

Wiley

Subject

Genetics,Molecular Biology,Biochemistry,Biotechnology

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